Reliable Transmission for Remote Device Management (RDM) Protocol in Lighting Control Networks

Size: px
Start display at page:

Download "Reliable Transmission for Remote Device Management (RDM) Protocol in Lighting Control Networks"

Transcription

1 Reliable Transmission for Remote Device Management (RDM) Protocol in Lighting Control Networks Sang-Il Choi 1, Sanghun Lee 1, Seok-Joo Koh 1, Sang-Kyu Lim 2, Insu Kim 2, and Tae-Gyu Kang 2 1 Kyungpook National University, South Korea 2 Electronics Telecommunications Research Institute, South Korea {overcycos,lah1290}@gmail.com, sjkoh@knu.ac.kr, {sklim,iskim,tgkang}@etri.re.kr Abstract. The Remote Device Management (RDM) protocol is used to manage lighting devices in the lighting control network. RDM provides bi-directional communication between lighting devices based on the modified DMX512 data link so as to perform device discovery, configuration, monitoring, and management of the devices connected through the DMX512 network. However, the RDM protocol does not provide a reliable packet transmission. To overcome this limitation, we propose the two retransmission schemes: sequence-based retransmission, and timer-based retransmission. In the existing RDM protocol, each response packet uses the same Transaction Number (TN) with that of the request packet from the controller. In the proposed schemes, we use TN to identify a lost or error message. For example, if a response packet with a specific TN number does not arrive within a pre-specified time, the controller will retransmit the concerned request message. From the numerical analysis, it is shown that the proposed retransmission schemes can give better reliability than the existing RDM protocol, and the sequence-based and timerbased retransmission schemes provide the different performance, depending on network environments. Keywords: RDM, Lighting Devices, Retransmission, Reliability. 1 Introduction One of the primary issues on the lighting control system is how to effectively control a lot of lighting devices in the network [1]. Some protocols for control of lighting devices have so far been made in the PLASA Technical Standards Program (TSP) [2], which include the Digital Multiplex 512-A (DMX512-A) and the Remote Device Management (RDM) [3, 4]. The RDM protocol provides the device discovery, configuration, monitoring, and management of console or other controlling devices connected through a DMX512 network. The RDM protocol is based on the pulling system. That is, only the controller can first initiate communication, and the devices will respond to the request of controller. However, in the RDM protocol, there is no retransmission mechanism. So, any error or loss of packet will not be recovered. From this reason, if the status of Y.-S. Jeong et al. (eds.), Ubiquitous Information Technologies and Applications, Lecture Notes in Electrical Engineering 280, DOI: / _8, Springer-Verlag Berlin Heidelberg

2 52 S.-I. Choi et al. the DMX512 network becomes worse with a large packet error rate, the controller cannot manage the lighting devices effectively due to the error or loss of the request or response packets. To address this limitation, in this paper, we propose the two retransmission schemes for RDM protocol. The proposed retransmission schemes can be used to effectively provide reliable packet transmission in the RDM protocol, compared to the existing RDM protocol, as done in the Transmission Control Protocol [5]. This paper is organized as follows. Section 2 describes the data transmission mechanisms of the existing RDM protocol. In Section 3, we describe the proposed two retransmission schemes for RDM. Section 4 analyzes and compares the existing and proposed schemes in terms of the reliability and performance. Section 5 concludes this paper. 2 Packet Transmission Mechanisms in RDM In RDM, each communication is only performed between controller and devices, and it is assumed that there is only one controller in the network and all devices are managed by the controller. Fig. 1 shows the network model of the RDM protocol in the lighting control networks. Fig. 1. Network model of RDM in lighting control networks In the existing RDM protocol, there is no packet retransmission process. Fig. 2 shows the packet transmission mechanism of the existing RDM Protocol. Fig. 2. Packet transmission of the existing RDM protocol First, if the controller has a message to send, it makes a request packet including the associated control information and sends it to the device over the DMX512 data link. Then, the controller waits for the response packet from device for a specific time

3 Reliable Transmission for RDM Protocol in Lighting Control Networks 53 (e.g., 2.1mS). If there is no response message in a specific time, the controller will decide that the response packet is lost and may send the request packet again. However, if the response packet arrives from devices, the controller just checks the Transaction Number (TN) field of the response packet to map between a request packet and a response packet and the checksum field to determine whether the packet has any error. After the reception of the response packet is completed, the controller resumes sending the request packets. When the controller has no additional request packet to send, the data transmission process is completed. As shown in Fig. 2, the existing RDM protocol has no consideration for recovery of the lost or error packets. Thus, if there are some errors in the response packet, the controller will just check an error using the checksum field. The controller does not attempt to recover the errors. Fig. 3 summarizes the data transmission procedures of the existing RDM scheme. Fig. 3. Procedure for data transmission of existing RDM scheme In addition, in the RDM protocol, there is a negative acknowledgement (NACK) packet to indicate that the responder is unable to reply with the requested command, and this NACK packet includes a reason for the error. However, after receiving the NACK packet, there is no retransmission process to recover the error packet. The NACK-based retransmission scheme may be considered for the RDM protocol. However, we do not discuss this scheme in this paper, because this scheme is only performed at a packet format error condition and cannot handle the packet loss condition. 3 Proposed Retransmission Schemes To provide the reliable packet transmission for RDM, we propose the two retransmission schemes: sequence-based and timer-based schemes. For each scheme, we use the TN field of RDM packet. In addition, we define a buffer in the controller for temporarily storing packets for retransmission in the event of packet loss or error. 3.1 Sequence-Based Retransmission In the sequence-based retransmission scheme, only the TN of a response packet is used. In this case, the packet retransmission is only performed when the order of TN contained in the response packet indicates a loss or error. With this concept, after only the further subsequent response packet arrives at the controller, the retransmission of previous packet can begin. Fig. 4 shows the packet retransmission mechanisms of the sequence-based retransmission scheme.

4 54 S.-I. Choi et al. Fig. 4. Sequence-based retransmission scheme First, if the controller has a message to send, it makes a request packet including the control information, temporarily stores the packet in the buffer, and then it sends the request packet over the DMX512 data link. Then, the controller waits for the response packet from the device. It is expected that the response packet has the same TN with that of the request packet that the controller sent. In this scheme, we focus on the loss of request or response packet, so we do not consider the reception of corrupted packet. If the response packet does not arrive, the controller waits for a specific time (2.1mS) and checks additional messages for device. On the other hand, if a response packet arrives from the device, the controller checks the order of TN for the response packet. After checking the order of TN, if the associated TN is different from the expected value of sequence counter at controller, it performs the retransmission of the lost request packet. On the other hand, in the successful reception case, the controller will remove the packet stored in the buffer. When the controller has no additional request packet to send, the data transmission process is completed. Fig. 5 summarizes the data transmission procedures for the sequence-based retransmission scheme. Fig. 5. Procedure of sequence-based retransmission scheme

5 Reliable Transmission for RDM Protocol in Lighting Control Networks Timer-Based Retransmission In the timer-based retransmission scheme, we use the TN of the response packet with temporary buffering. In addition, we define a retransmission timer for retransmission of each lost packet at the controller. This retransmission scheme also focuses on the packet loss rather than the packet error, as done in the sequence-based retransmission scheme. So, the packet retransmission is only performed when the retransmission timer is expired by a packet loss. Fig. 6 shows the packet transmission flow in the timer-based retransmission scheme. Fig. 6. Packet transmission flow in the timer-based retransmission scheme If the controller has a message to send, it stores the packet in the buffer, and sends it over the DMX512 data link. Then, the controller activates the retransmission timer for the transmitted request packet and waits for the response packet. If the associated response packet arrives before the retransmission timer is expired, the controller will process the response message successfully. Otherwise, if the response packet does not arrive with the retransmission time interval, the controller confirms that the request packet is lost for any reason, and the request packet will be retransmitted by the controller. Fig. 7 summarizes the data transmission procedure in the timer-based retransmission scheme. Fig. 7. Data transmission procedure of timer-based retransmission scheme

6 56 S.-I. Choi et al. 4 Performance Analysis by Simulation To evaluate the performance of the proposed retransmission schemes, we analyze the reliability and the packet transmission completion for the existing RDM protocol, the sequence-based retransmission scheme, and the timer-based retransmission scheme in various network conditions. We define the parameters used for analysis in Table 1. Table 1. Parameters used for numerical analysis Parameter Description N a Total number of a (e.g., N packet : number of total transmitted packet) R b Ratio of b (e.g., R loss : loss ratio of DMX512 link) T c Time value of c (e.g., T timer : timer period of controller, T packet : packet generation interval by controller) For numerical analysis, we made the simulation code for each scheme by using the MATLAB [6]. In the analysis, we set a single request-response transation time over the DMX512-A link as 2.1mS mS = 5.584mS by referring to [6]. Fig. 8 shows the impact of the request packet generation time interval at the controller on goodput. The goodput is defined as the number of successfully transmitted data packets divided by the total transmission completion time. In this figure, the timer-based retransmission schemes give lower goodput performance because the timer-based schemes tend to spend so long time to recover the lost packets by using a long retransmission timer. However, as the packet generation time interval gets larger, all retransmission schemes show better goodtput than the existing RDM protocol. Fig. 9 shows the impact of the packet loss rate on goodput. In this figure, as the packet loss rate increases, the existing RDM protocol provides the lowest goodput performance. This is because the goodput is decreased with more packet losses. Among the candidate retransmission schemes, the sequence-based retransmission and the timer-based retransmission (with the retransmission timer of 5.584ms) schemes show better performance than the other schemes. Fig. 8. Impact of packet generation interval on goodput

7 Reliable Transmission for RDM Protocol in Lighting Control Networks 57 Fig. 9. Impact of packet loss rate on goodput Fig. 10 shows the impact of the packet generation time interval on the transmission completion time. In this figure, we can see that the timer-based retransmission scheme (with the timer of ms) shows the longest transmission completion time due to the long recovery time. We can also see that the sequence-based retransmission scheme gives the performance between the two timer-based schemes with the timer of 5.584ms and the timer of 55.84ms. Fig. 10. Impact of packet generation interval on transmission completion time Fig. 11. Impact of packet loss rate on transmission completion time

8 58 S.-I. Choi et al. Fig. 11 shows the impact of the packet loss rate on the transmission completion time. In this figure, it is shown that the sequence-based scheme provides the same performance with the timer-based scheme with the timer of 5.584ms, and those two schemes give better performance than the other two schemes, when the packet loss rate is greater than 20%. From the analysis, we see that the proposed sequence-based and timer-based retransmission schemes can recover the lost packets effectively and provide the reliable transmission in the lossy network. Among the candidate retransmission schemes, the sequence-based retransmission scheme gives robust and better performance than the timer-based schemes. However, if we set the retransmission timer more appropriately, the timer-based scheme can be used more effectively. 5 Conclusions In this paper, we proposed the two retransmission schemes for the RDM protocol: sequence-based retransmission and timer-based retransmission. The sequence-based scheme is based on the Transaction Number of the request packet, whereas the timerbased scheme uses the retransmission timer. By numerical analysis, the proposed retransmission schemes are compared with the existing RDM protocol in terms of reliability and transmission completion time. From the results, it is shown that the retransmission schemes can recover the lost packet effectively in the lossy network. Among the candidate retransmission schemes, the sequence-based retransmission scheme gives robust and better performance than the timer-based schemes. However, if we set the retransmission timer more appropriately, the timer-based retransmission scheme can provide the best performance. Acknowledgment. This research was supported by the MSIP support program of NIPA (NIPA-2013-H ), and ICT Standardization program of MSIP (Ministry of Science, ICT & Future Planning). References 1. Roo, Y.-S., Jang, W.-C.: Implementation of Ubiquitous Lighting Network System Using Embedded Linux. In: Proceeding of the Institute of Electronics Engineers of Korea, pp (2007) 2. Professional Lighting And Sound Association (PLASA), 3. American National Standard Institute(ANSI), Asynchronous Serial Digital Data Transmission Standard for Controlling Lighting Equipment and Accessories, American National Standard E1.11 (2008) 4. American National Standard Institute(ANSI), Remote Device Management Over DMX512 Networks, American National Standard E1.20 (2006) 5. Cerf, V.G., Kahn, R.E.: A Protocol for Packet Network Intercommunication. IEEE Transaction on Communications Com-22(5) (1974) 6. Homepage of MATHWORK,

Fast Device Discovery for Remote Device Management in Lighting Control Networks

Fast Device Discovery for Remote Device Management in Lighting Control Networks J Inf Process Syst, Vol.10, No.4, pp.00~00, December 2014 http://dx.doi.org/10.3745/jips.03.0011 ISSN 1976-913X (Print) ISSN 2092-805X (Electronic) Fast Device Discovery for Remote Device Management in

More information

Reliable transmission of visible light communication data in lighting control networks

Reliable transmission of visible light communication data in lighting control networks IET Networks Research Article Reliable transmission of visible light communication data in lighting control networks ISSN 2047-4954 Received on 12th February 2017 Accepted on 12th March 2017 E-First on

More information

Partial Bicasting with Buffering for Proxy Mobile IPv6 Handover in Wireless Networks

Partial Bicasting with Buffering for Proxy Mobile IPv6 Handover in Wireless Networks Journal of Information Processing Systems, Vol.7, No.4, December 2011 http://dx.doi.org/10.3745/jips.2011.7.4.627 Partial Bicasting with Buffering for Proxy Mobile IPv6 Handover in Wireless Networks Ji-In

More information

Seamless Multicast Handover in Fmipv6-Based Networks

Seamless Multicast Handover in Fmipv6-Based Networks Seamless Multicast Handover in Fmipv6-Based Networks Moneeb Gohar, Seok Joo Koh, Tae-Won Um, and Hyun-Woo Lee Abstract This paper proposes a fast tree join scheme to provide seamless multicast handover

More information

Enhanced Cluster-based CoAP in Internet-of-Things Networks

Enhanced Cluster-based CoAP in Internet-of-Things Networks Enhanced Cluster-based CoAP in Internet-of-Things Networks Dong-Kyu Choi School of Computer Science and Engineering, Kyungpook National University Daegu, Korea supergint@gmail.com Joong-Hwa Jung School

More information

Q-PMIP: Query-based Proxy Mobile IPv6

Q-PMIP: Query-based Proxy Mobile IPv6 Q-PMIP: Query-based Proxy Mobile IPv6 Jae Wan Park*, Ji In Kim*, Seok Joo Koh* *School of Computer Science and Engineering, Kyungpook National University, Korea jwparkinf8@gmail.com, jiin16@gmail.com,

More information

CC-SCTP: Chunk Checksum of SCTP for Enhancement of Throughput in Wireless Network Environments

CC-SCTP: Chunk Checksum of SCTP for Enhancement of Throughput in Wireless Network Environments CC-SCTP: Chunk Checksum of SCTP for Enhancement of Throughput in Wireless Network Environments Stream Control Transmission Protocol (SCTP) uses the 32-bit checksum in the common header, by which a corrupted

More information

ICTC 2013 http://ictc2013.org/main/ 1 / 1 2013-10-17 International Advisory Committee Steering Committee Organizing Committee Technical Program Committee Program at a Glance Industrial Session Special

More information

Distributed CoAP Handover Using Distributed Mobility Agents in Internet-of-Things Networks

Distributed CoAP Handover Using Distributed Mobility Agents in Internet-of-Things Networks J. lnf. Commun. Converg. Eng. 15(1): 37-42, Mar. 2017 Regular paper Distributed CoAP Handover Using Distributed Mobility Agents in Internet-of-Things Networks Sang-Il Choi 1 and Seok-Joo Koh 2*, Member,

More information

msctp for Vertical Handover Between Heterogeneous Networks

msctp for Vertical Handover Between Heterogeneous Networks msctp for Vertical Handover Between Heterogeneous Networks Seok Joo Koh and Sang Wook Kim Department of Computer Science, Kyungpook National University, Daegoo, Korea {sjkoh, swkim}@cs.knu.ac.kr Abstract.

More information

Distributed Mobility Control Schemes in the HIP-based Mobile Networks

Distributed Mobility Control Schemes in the HIP-based Mobile Networks ICACT Transactions on Advanced Communications Technology (TACT) Vol. 2, Issue 4, July 2013 269 Distributed Mobility Control Schemes in the HIP-based Mobile Networks Sang-Il Choi, Seok-Joo Koh School of

More information

The flow of data must not be allowed to overwhelm the receiver

The flow of data must not be allowed to overwhelm the receiver Data Link Layer: Flow Control and Error Control Lecture8 Flow Control Flow and Error Control Flow control refers to a set of procedures used to restrict the amount of data that the sender can send before

More information

Delay Constrained ARQ Mechanism for MPEG Media Transport Protocol Based Video Streaming over Internet

Delay Constrained ARQ Mechanism for MPEG Media Transport Protocol Based Video Streaming over Internet Delay Constrained ARQ Mechanism for MPEG Media Transport Protocol Based Video Streaming over Internet Hong-rae Lee, Tae-jun Jung, Kwang-deok Seo Division of Computer and Telecommunications Engineering

More information

A Network-Based Handover Scheme in HIP-Based Mobile Networks

A Network-Based Handover Scheme in HIP-Based Mobile Networks J Inf Process Syst, Vol.9, No.4, pp.651~659, December 2013 http://dx.doi.org/10.3745/jips.2013.9.4.651 pissn 1976-913X eissn 2092-805X A Network-Based Handover Scheme in HIP-Based Mobile Networks Moneeb

More information

Enhanced Mobility Control in Mobile LISP Networks

Enhanced Mobility Control in Mobile LISP Networks Enhanced Mobility Control in Mobile LISP Networks Moneeb Gohar School of Computer Science and Engineering Kyungpook National University Daegu, South Korea moneebgohar@gmail.com Ji In Kim School of Computer

More information

DHT-based Identifier-Locator Mapping Management for Mobile Oriented Future Internet

DHT-based Identifier-Locator Mapping Management for Mobile Oriented Future Internet DHT-based Identifier-Locator Mapping Management for Mobile Oriented Future Internet Hyung-Woo Kang Kyungpook National University Daegu, Korea hwkang0621@gmail.com Ji-In Kim Kyungpook National University

More information

Distributed Mobility Management in Proxy Mobile IPv6 using Hash Function

Distributed Mobility Management in Proxy Mobile IPv6 using Hash Function Distributed Mobility Management in Proxy Mobile IPv6 using Hash Function Ji In Kim School of Computer Science and Engineering Kyungpook National University Daegu, Korea jiin16@gmail.com Seok Joo Koh School

More information

file:///c:/users/hpguo/dropbox/website/teaching/fall 2017/CS4470/H...

file:///c:/users/hpguo/dropbox/website/teaching/fall 2017/CS4470/H... 1 of 9 11/26/2017, 11:28 AM Homework 3 solutions 1. A window holds bytes 2001 to 5000. The next byte to be sent is 3001. Draw a figure to show the situation of the window after the following two events:

More information

The Transport Layer Reliability

The Transport Layer Reliability The Transport Layer Reliability CS 3, Lecture 7 http://www.cs.rutgers.edu/~sn4/3-s9 Srinivas Narayana (slides heavily adapted from text authors material) Quick recap: Transport Provide logical communication

More information

Host Identifier and Local Locator for Mobile Oriented Future Internet: Implementation Perspective

Host Identifier and Local Locator for Mobile Oriented Future Internet: Implementation Perspective Host Identifier and Local Locator for Mobile Oriented Future Internet: Implementation Perspective Nak Jung Choi*, Ji In Kim**, Seok Joo Koh* * School of Computer Science and Engineering, Kyungpook National

More information

Seamless Multicast Handover in PMIPv6-based Wireless Networks

Seamless Multicast Handover in PMIPv6-based Wireless Networks Seamless Multicast Handover in PMIPv6-based Wireless Networks Moneeb Gohar*, Seok Joo Koh*, Tae-Won Um**, Hyun-Woo Lee** *School of Computer Science and Engineering, Kyungpook National University **Electronic

More information

Impact of IEEE MAC Packet Size on Performance of Wireless Sensor Networks

Impact of IEEE MAC Packet Size on Performance of Wireless Sensor Networks IOSR Journal of Electronics and Communication Engineering (IOSR-JECE) e-issn: 2278-2834,p- ISSN: 2278-8735.Volume 10, Issue 3, Ver. IV (May - Jun.2015), PP 06-11 www.iosrjournals.org Impact of IEEE 802.11

More information

Lecture 26: Data Link Layer

Lecture 26: Data Link Layer Introduction We have seen in previous lectures that the physical layer is responsible for the transmission of row bits (Ones and Zeros) over the channel. It is responsible for issues related to the line

More information

Distributed Mobility Control for Mobile-Oriented Future Internet Environments

Distributed Mobility Control for Mobile-Oriented Future Internet Environments Distributed Mobility Control for Mobile-Oriented Future Internet Environments Ji-In Kim Kyungpook National University Daegu, KOREA jiin16@gmail.com Heeyoung JUNG ETRI Daejon, KOREA hyjung@etri.re.kr Seok

More information

Network-based Fast Handover for IMS Applications and Services

Network-based Fast Handover for IMS Applications and Services Network-based Fast Handover for IMS Applications and Services Sang Tae Kim 1, Seok Joo Koh 1, Lee Kyoung-Hee 2 1 Department of Computer Science, Kyungpook National University 2 Electronics and Telecommunications

More information

Project: IEEE P Working Group for Wireless Personal Area Networks N

Project: IEEE P Working Group for Wireless Personal Area Networks N Project: IEEE P802.15 Working Group for Wireless Personal Area Networks N (WPANs) Submission Title: [ETRI MAC Proposal on Color Packet ] Date Submitted: [23 September, 2009] Source: [Ill Soon Jang, Tae-Gyu

More information

UNIT IV -- TRANSPORT LAYER

UNIT IV -- TRANSPORT LAYER UNIT IV -- TRANSPORT LAYER TABLE OF CONTENTS 4.1. Transport layer. 02 4.2. Reliable delivery service. 03 4.3. Congestion control. 05 4.4. Connection establishment.. 07 4.5. Flow control 09 4.6. Transmission

More information

Fast, Efficient, and Robust Multicast in Wireless Mesh Networks

Fast, Efficient, and Robust Multicast in Wireless Mesh Networks fast efficient and robust networking FERN Fast, Efficient, and Robust Multicast in Wireless Mesh Networks Ian Chakeres Chivukula Koundinya Pankaj Aggarwal Outline IEEE 802.11s mesh multicast FERM algorithms

More information

Communication Networks

Communication Networks Communication Networks Prof. Laurent Vanbever Exercises week 4 Reliable Transport Reliable versus Unreliable Transport In the lecture, you have learned how a reliable transport protocol can be built on

More information

Contents. CIS 632 / EEC 687 Mobile Computing. TCP in Fixed Networks. Prof. Chansu Yu

Contents. CIS 632 / EEC 687 Mobile Computing. TCP in Fixed Networks. Prof. Chansu Yu CIS 632 / EEC 687 Mobile Computing TCP in Fixed Networks Prof. Chansu Yu Contents Physical layer issues Communication frequency Signal propagation Modulation and Demodulation Channel access issues Multiple

More information

Distributed Pub/Sub Model in CoAP-based Internet-of-Things Networks

Distributed Pub/Sub Model in CoAP-based Internet-of-Things Networks Distributed Pub/Sub Model in CoAP-based Internet-of-Things Networks Joong-Hwa Jung School of Computer Science and Engineering, Kyungpook National University Daegu, Korea godopu16@gmail.com Dong-Kyu Choi

More information

ERROR AND FLOW CONTROL. Lecture: 10 Instructor Mazhar Hussain

ERROR AND FLOW CONTROL. Lecture: 10 Instructor Mazhar Hussain ERROR AND FLOW CONTROL Lecture: 10 Instructor Mazhar Hussain 1 FLOW CONTROL Flow control coordinates the amount of data that can be sent before receiving acknowledgement It is one of the most important

More information

Lecture 7: Flow Control"

Lecture 7: Flow Control Lecture 7: Flow Control" CSE 123: Computer Networks Alex C. Snoeren No class Monday! Lecture 7 Overview" Flow control Go-back-N Sliding window 2 Stop-and-Wait Performance" Lousy performance if xmit 1 pkt

More information

Partial CRC Checksum of SCTP for Error Control over Wireless Networks

Partial CRC Checksum of SCTP for Error Control over Wireless Networks Wireless Pers Commun (2009) 48:247 260 DOI 10.1007/s11277-008-9520-3 Partial CRC Checksum of SCTP for Error Control over Wireless Networks Lin Cui Seok Joo Koh Published online: 20 June 2008 Springer Science+Business

More information

Performance of UMTS Radio Link Control

Performance of UMTS Radio Link Control Performance of UMTS Radio Link Control Qinqing Zhang, Hsuan-Jung Su Bell Laboratories, Lucent Technologies Holmdel, NJ 77 Abstract- The Radio Link Control (RLC) protocol in Universal Mobile Telecommunication

More information

An Enhanced IEEE Retransmission Scheme

An Enhanced IEEE Retransmission Scheme An Enhanced IEEE 802.11 Retransmission Scheme Hao-Li Wang, Jinghao Miao, J. Morris Chang Dept. of Electrical and Computer Engineering Iowa State University haoli, jhmiao, morris@iastate.edu Abstract In

More information

Adapting TCP Segment Size in Cellular Networks

Adapting TCP Segment Size in Cellular Networks Adapting TCP Segment Size in Cellular Networks Jin-Hee Choi 1, Jin-Ghoo Choi 2, and Chuck Yoo 1 1 Department of Computer Science and Engineering, Korea University {jhchoi, hxy}@os.korea.ac.kr 2 School

More information

Project: IEEE P Working Group for Wireless Personal Area Networks N

Project: IEEE P Working Group for Wireless Personal Area Networks N Project: IEEE P802.15 Working Group for Wireless Personal Area Networks N (WPANs( WPANs) Submission Title: [Comment resolution for CID 400 related to turnaroud time] Date Submitted: [11 th June, 2010]

More information

Considering Spurious Timeout in Proxy for Improving TCP Performance in Wireless Networks

Considering Spurious Timeout in Proxy for Improving TCP Performance in Wireless Networks Considering Spurious Timeout in Proxy for Improving TCP Performance in Wireless Networks YuChul Kim Telecommunication R&D Center, Samsung Electronics,Co., Ltd yuchul.kim@samsung.com DongHo Cho Communication

More information

Use of SCTP for IP Handover Support

Use of SCTP for IP Handover Support Use of SCTP for IP Handover Support Dong Phil Kim, Jong Shik Ha, Sang Tae Kim, Seok Joo Koh Department of Computer Science Kyungpook National University {dpkim, mugal1, sainpaul1978}@cs.knu.ac.kr Abstract

More information

Error Control Techniques for Interactive Low-bit Rate Video Transmission over the Internet.

Error Control Techniques for Interactive Low-bit Rate Video Transmission over the Internet. Error Control Techniques for Interactive Low-bit Rate Video Transmission over the Internet. Injong Rhee Department of Computer Science North Carolina State University Video Conferencing over Packet- Switching

More information

ELEN Network Fundamentals Lecture 15

ELEN Network Fundamentals Lecture 15 ELEN 4017 Network Fundamentals Lecture 15 Purpose of lecture Chapter 3: Transport Layer Reliable data transfer Developing a reliable protocol Reliability implies: No data is corrupted (flipped bits) Data

More information

The Transport Layer: TCP & Reliable Data Transfer

The Transport Layer: TCP & Reliable Data Transfer The Transport Layer: TCP & Reliable Data Transfer Smith College, CSC 249 February 15, 2018 1 Chapter 3: Transport Layer q TCP Transport layer services: v Multiplexing/demultiplexing v Connection management

More information

TCP : Fundamentals of Computer Networks Bill Nace

TCP : Fundamentals of Computer Networks Bill Nace TCP 14-740: Fundamentals of Computer Networks Bill Nace Material from Computer Networking: A Top Down Approach, 6 th edition. J.F. Kurose and K.W. Ross Administrivia Lab #1 due now! Reminder: Paper Review

More information

CS 5520/ECE 5590NA: Network Architecture I Spring Lecture 13: UDP and TCP

CS 5520/ECE 5590NA: Network Architecture I Spring Lecture 13: UDP and TCP CS 5520/ECE 5590NA: Network Architecture I Spring 2008 Lecture 13: UDP and TCP Most recent lectures discussed mechanisms to make better use of the IP address space, Internet control messages, and layering

More information

Data Link Layer, Part 5 Sliding Window Protocols. Preface

Data Link Layer, Part 5 Sliding Window Protocols. Preface Data Link Layer, Part 5 Sliding Window Protocols These slides are created by Dr. Yih Huang of George Mason University. Students registered in Dr. Huang's courses at GMU can make a single machine-readable

More information

Data Link Control Protocols

Data Link Control Protocols Protocols : Introduction to Data Communications Sirindhorn International Institute of Technology Thammasat University Prepared by Steven Gordon on 23 May 2012 Y12S1L07, Steve/Courses/2012/s1/its323/lectures/datalink.tex,

More information

Simulation of TCP Layer

Simulation of TCP Layer 39 Simulation of TCP Layer Preeti Grover, M.Tech, Computer Science, Uttrakhand Technical University, Dehradun ABSTRACT The Transmission Control Protocol (TCP) represents the most deployed transport protocol

More information

Mobile Agent-Based Load Monitoring System for the Safety Web Server Environment

Mobile Agent-Based Load Monitoring System for the Safety Web Server Environment Mobile -Based Load Monitoring System for the Safety Web Server Environment H.J. Park 1, K.J. Jyung 2, and S.S. Kim 3 1 School of Computer Information and Communication Engineering, Sangji University, Woosandong,

More information

RD-TCP: Reorder Detecting TCP

RD-TCP: Reorder Detecting TCP RD-TCP: Reorder Detecting TCP Arjuna Sathiaseelan and Tomasz Radzik Department of Computer Science, King s College London, Strand, London WC2R 2LS {arjuna,radzik}@dcs.kcl.ac.uk Abstract. Numerous studies

More information

Timestamp Retransmission Algorithm for TCP-Cherry over InterPlaNetary Internet

Timestamp Retransmission Algorithm for TCP-Cherry over InterPlaNetary Internet Network and Communication Technologies; Vol. 1, No. 2; 2012 ISSN 1927-064X E-ISSN 1927-0658 Published by Canadian Center of Science and Education Timestamp Retransmission Algorithm for TCP-Cherry over

More information

Chapter 14 HARD: Host-Level Address Remapping Driver for Solid-State Disk

Chapter 14 HARD: Host-Level Address Remapping Driver for Solid-State Disk Chapter 14 HARD: Host-Level Address Remapping Driver for Solid-State Disk Young-Joon Jang and Dongkun Shin Abstract Recent SSDs use parallel architectures with multi-channel and multiway, and manages multiple

More information

Back-Up Chord: Chord Ring Recovery Protocol for P2P File Sharing over MANETs

Back-Up Chord: Chord Ring Recovery Protocol for P2P File Sharing over MANETs Back-Up Chord: Chord Ring Recovery Protocol for P2P File Sharing over MANETs Hong-Jong Jeong, Dongkyun Kim, Jeomki Song, Byung-yeub Kim, and Jeong-Su Park Department of Computer Engineering, Kyungpook

More information

TCP Throughput Improvement over Vertical Handover between 3G LTE and WLAN

TCP Throughput Improvement over Vertical Handover between 3G LTE and WLAN TCP Throughput Improvement over Vertical Handover between 3G LTE and WLAN Sujin Park 1 and Ju-Wook Jang 2 1 Graduate School of Information and Technology sulgician@lg-ericsson.com 2 Department of Electronic

More information

Reliable Mobile IP Multicast Based on Hierarchical Local Registration

Reliable Mobile IP Multicast Based on Hierarchical Local Registration Sensors & Transducers 2014 by IFSA Publishing, S. L. http://www.sensorsportal.com Reliable Mobile IP Multicast Based on Hierarchical Local Registration Huanming ZHANG, * Quanlong GUAN, Zi Zhao ZHU, Weiqi

More information

STEVEN R. BAGLEY PACKETS

STEVEN R. BAGLEY PACKETS STEVEN R. BAGLEY PACKETS INTRODUCTION Talked about how data is split into packets Allows it to be multiplexed onto the network with data from other machines But exactly how is it split into packets and

More information

Comparison Study of Transmission Control Protocol and User Datagram Protocol Behavior over Multi-Protocol Label Switching Networks in Case of Failures

Comparison Study of Transmission Control Protocol and User Datagram Protocol Behavior over Multi-Protocol Label Switching Networks in Case of Failures Journal of Computer Science 5 (12): 1042-1047, 2009 ISSN 1549-3636 2009 Science Publications Comparison Study of Transmission Control Protocol and User Datagram Protocol Behavior over Multi-Protocol Label

More information

CS321: Computer Networks Error and Flow Control in TCP

CS321: Computer Networks Error and Flow Control in TCP CS321: Computer Networks Error and Flow Control in TCP Dr. Manas Khatua Assistant Professor Dept. of CSE IIT Jodhpur E-mail: manaskhatua@iitj.ac.in SEQ and ACK numbers in TCP TCP views data as an unstructured,

More information

(JBE Vol. 21, No. 3, May 2016) 6LoWPAN. Implementation of CoAP/6LoWPAN over BLE Networks for IoT Services. Abstract

(JBE Vol. 21, No. 3, May 2016) 6LoWPAN. Implementation of CoAP/6LoWPAN over BLE Networks for IoT Services. Abstract (Special Paper) 21 3, 2016 5 (JBE Vol. 21, No. 3, May 2016) http://dx.doi.org/10.5909/jbe.2016.21.3.298 ISSN 2287-9137 (Online) ISSN 1226-7953 (Print) BLE CoAP 6LoWPAN a), a), a), a) Implementation of

More information

Reliable Transport : Fundamentals of Computer Networks Bill Nace

Reliable Transport : Fundamentals of Computer Networks Bill Nace Reliable Transport 14-740: Fundamentals of Computer Networks Bill Nace Material from Computer Networking: A Top Down Approach, 6 th edition. J.F. Kurose and K.W. Ross Administration Stuff is due HW #1

More information

Principles of Reliable Data Transfer

Principles of Reliable Data Transfer Principles of Reliable Data Transfer 1 Reliable Delivery Making sure that the packets sent by the sender are correctly and reliably received by the receiver amid network errors, i.e., corrupted/lost packets

More information

Master. Slave. Master. Slaves. TCP/IP Traffic with Efficient Bluetooth Technology. Shafqat Hameed 1, Umar F.Khan 2, *Muhammad Saleem 3

Master. Slave. Master. Slaves. TCP/IP Traffic with Efficient Bluetooth Technology. Shafqat Hameed 1, Umar F.Khan 2, *Muhammad Saleem 3 / Traffic with Efficient Bluetooth Technology Shafqat Hameed 1, Umar F.Khan 2, *Muhammad Saleem 3 1,3 National University of Sciences and Technology (NUST), Pakistan 2 University of Bradford, Bradford,

More information

2.4 Error Detection Bit errors in a frame will occur. How do we detect (and then. (or both) frames contains an error. This is inefficient (and not

2.4 Error Detection Bit errors in a frame will occur. How do we detect (and then. (or both) frames contains an error. This is inefficient (and not CS475 Networks Lecture 5 Chapter 2: Direct Link Networks Assignments Reading for Lecture 6: Sections 2.6 2.8 Homework 2: 2.1, 2.4, 2.6, 2.14, 2.18, 2.31, 2.35. Due Thursday, Sept. 15 2.4 Error Detection

More information

Research Article An ID/Locator Separation Based Group Mobility Management in Wireless Body Area Network

Research Article An ID/Locator Separation Based Group Mobility Management in Wireless Body Area Network Journal of Sensors Volume 215, Article ID 53725, 12 pages http://dx.doi.org/1.1155/215/53725 Research Article An ID/Locator Separation Based Group Mobility Management in Wireless Body Area Network Moneeb

More information

Real-time and Reliable Video Transport Protocol (RRVTP) for Visual Wireless Sensor Networks (VSNs)

Real-time and Reliable Video Transport Protocol (RRVTP) for Visual Wireless Sensor Networks (VSNs) Real-time and Reliable Video Transport Protocol (RRVTP) for Visual Wireless Sensor Networks (VSNs) Dr. Mohammed Ahmed Abdala, Mustafa Hussein Jabbar College of Information Engineering, Al-Nahrain University,

More information

CSE 123: Computer Networks Alex C. Snoeren. HW 1 due NOW!

CSE 123: Computer Networks Alex C. Snoeren. HW 1 due NOW! CSE 123: Computer Networks Alex C. Snoeren HW 1 due NOW! Automatic Repeat Request (ARQ) Acknowledgements (ACKs) and timeouts Stop-and-Wait Sliding Window Forward Error Correction 2 Link layer is lossy

More information

Basic Protocols and Error Control Mechanisms

Basic Protocols and Error Control Mechanisms Basic Protocols and Error Control Mechanisms Nicola Dragoni Embedded Systems Engineering DTU Compute ACK/NACK Protocol Polling Protocol PAR Protocol Exchange of State Information Two-Way Handshake Protocol

More information

CCNA 1: Chapter 2 Exam Answer v %

CCNA 1: Chapter 2 Exam Answer v % 1. Refer to the exhibit. Cell A at IP address 10.0.0.34 has established an IP session with IP Phone 1? at IP address 172.16.1.103. Based upon the graphic, which device type best describes the function

More information

TCP/IP. Chapter 5: Transport Layer TCP/IP Protocols

TCP/IP. Chapter 5: Transport Layer TCP/IP Protocols TCP/IP Chapter 5: Transport Layer TCP/IP Protocols 1 Objectives Understand the key features and functions of the User Datagram Protocol Explain the mechanisms that drive segmentation, reassembly, and retransmission

More information

Chapter 23 Process-to-Process Delivery: UDP, TCP, and SCTP 23.1

Chapter 23 Process-to-Process Delivery: UDP, TCP, and SCTP 23.1 Chapter 23 Process-to-Process Delivery: UDP, TCP, and SCTP 23.1 Copyright The McGraw-Hill Companies, Inc. Permission required for reproduction or display. 23-1 PROCESS-TO-PROCESS DELIVERY 23.2 The transport

More information

Reliable File Transfer in the Multicast Domain

Reliable File Transfer in the Multicast Domain Reliable File Transfer in the Multicast Domain Winston Dang August 1993 Abstract This paper describes a broadcast file transfer protocol that is suitable for widespread distribution of files from several

More information

Chapter 3. The Data Link Layer. Wesam A. Hatamleh

Chapter 3. The Data Link Layer. Wesam A. Hatamleh Chapter 3 The Data Link Layer The Data Link Layer Data Link Layer Design Issues Error Detection and Correction Elementary Data Link Protocols Sliding Window Protocols Example Data Link Protocols The Data

More information

ECE 333: Introduction to Communication Networks Fall 2001

ECE 333: Introduction to Communication Networks Fall 2001 ECE 333: Introduction to Communication Networks Fall 2001 Lecture 26: Transport layer I 1 Transport Layer In the remaining lectures, we will discuss several issues that are commonly addressed at the transport

More information

Outline Computer Networking. Functionality Split. Transport Protocols

Outline Computer Networking. Functionality Split. Transport Protocols Outline 15-441 15 441 Computer Networking 15-641 Lecture 10: Transport Protocols Justine Sherry Peter Steenkiste Fall 2017 www.cs.cmu.edu/~prs/15 441 F17 Transport introduction TCP connection establishment

More information

A Medium Access Control Protocol with Retransmission using NACK and Directional Antennas for Broadcasting in Wireless Ad-Hoc Networks

A Medium Access Control Protocol with Retransmission using NACK and Directional Antennas for Broadcasting in Wireless Ad-Hoc Networks A Medium Access Control Protocol with Retransmission using NACK and Directional Antennas for Broadcasting in Wireless Ad-Hoc Networks Yoriko Utsunomiya, Michito Takahashi, Masaki Bandai, and Iwao Sasase

More information

On-road Wireless Sensor Network for Traffic Surveillance

On-road Wireless Sensor Network for Traffic Surveillance On-road Wireless Sensor Network for Traffic Surveillance JaeJun Yoo, DoHyun Kim, KyoungHo Kim Vehicle/Ship/Defense IT Convergence Division Electronics and Telecommunications Research Institute Daejeon,

More information

A Review on Efficient Opportunistic Forwarding Techniques used to Handle Communication Voids in Underwater Wireless Sensor Networks

A Review on Efficient Opportunistic Forwarding Techniques used to Handle Communication Voids in Underwater Wireless Sensor Networks Advances in Wireless and Mobile Communications. ISSN 0973-6972 Volume 10, Number 5 (2017), pp. 1059-1066 Research India Publications http://www.ripublication.com A Review on Efficient Opportunistic Forwarding

More information

Performance Analysis of TCP LBA and TCP TAHOE Approaches in g Standard Savreet KaurBrar 1, Sandeep Singh Kang 2

Performance Analysis of TCP LBA and TCP TAHOE Approaches in g Standard Savreet KaurBrar 1, Sandeep Singh Kang 2 Performance Analysis of TCP LBA and TCP TAHOE Approaches in 802.11g Standard Savreet KaurBrar 1, Sandeep Singh Kang 2 1 (MTechCSE Student, Chandigarh Engineering College Landran,India) 2 (Associate Professor

More information

UPnP-Based Telematics Service Discovery for Local Hot-Spots

UPnP-Based Telematics Service Discovery for Local Hot-Spots UPnP-Based Telematics Service Discovery for Local Hot-Spots Dong-Kyun Kim and Sang-Jeong Lee Dept. of Computer Science and Engineering, Soonchunhyang University Asan, Chungnam, Korea {kdk7, sjlee}@sch.ac.kr

More information

Low Power and Low Latency MAC Protocol: Dynamic Control of Radio Duty Cycle

Low Power and Low Latency MAC Protocol: Dynamic Control of Radio Duty Cycle 24 IJCSNS International Journal of Computer Science and Network Security, VOL.12 No.12, December 212 Low Power and Low Latency MAC Protocol: Dynamic Control of Radio Duty Cycle Jeehoon Lee*, Jongsoo Jeong,

More information

PERFORMANCE ANALYSIS OF SNOOP TCP WITH FREEZING AGENT OVER CDMA2000 NETWORKS

PERFORMANCE ANALYSIS OF SNOOP TCP WITH FREEZING AGENT OVER CDMA2000 NETWORKS PERFORMANCE ANALYSIS OF SNOOP TCP WITH FREEZING AGENT OVER CDMA2 NETWORKS Sang-Hee Lee +, Hong-gu Ahn +, Jae-Sung Lim +, Seung-Hwan Kwak ++, Sung Kim ++ The Graduate School of Information and Communication,

More information

Continuous Real Time Data Transfer with UDP/IP

Continuous Real Time Data Transfer with UDP/IP Continuous Real Time Data Transfer with UDP/IP 1 Emil Farkas and 2 Iuliu Szekely 1 Wiener Strasse 27 Leopoldsdorf I. M., A-2285, Austria, farkas_emil@yahoo.com 2 Transilvania University of Brasov, Eroilor

More information

Preview Test: HW3. Test Information Description Due:Nov. 3

Preview Test: HW3. Test Information Description Due:Nov. 3 Preview Test: HW3 Test Information Description Due:Nov. 3 Instructions Multiple Attempts Not allowed. This test can only be taken once. Force Completion This test can be saved and resumed later. Question

More information

Fast-Handover Mechanism between WLAN and WiMax with MIH in PMIPv6

Fast-Handover Mechanism between WLAN and WiMax with MIH in PMIPv6 Telecommun Syst (2014) 55:47 54 DOI 10.1007/s11235-013-9750-x Fast-Handover Mechanism between 802.11 WLAN and 802.16 WiMax with MIH in PMIPv6 Cheol-Joong Kim Seok-Cheon Park Myung-Kyu Yi Published online:

More information

Distributed Interference-aware Medium Access Control for IEEE Visible Light Communications

Distributed Interference-aware Medium Access Control for IEEE Visible Light Communications Sensors and Materials, Vol. 30, No. 8 (2018) 1665 1670 MYU Tokyo 1665 S & M 1623 Distributed Interference-aware Medium Access Control for IEEE 802.15.7 Visible Light Communications Eui-Jik Kim, 1 Jung-Hyok

More information

Reliable Multicast Scheme Based on Busy Signal in Wireless LANs

Reliable Multicast Scheme Based on Busy Signal in Wireless LANs Journal of Modern Science and Technology Vol.2 No.1 March 2014. Pp.18-25 Reliable Multicast Scheme Based on Busy Signal in Wireless LANs Sunmyeng For unicast transmissions, the IEEE 802.11 WLAN MAC (Medium

More information

Hybrid gateway advertisement scheme for connecting mobile ad hoc networks to the Internet

Hybrid gateway advertisement scheme for connecting mobile ad hoc networks to the Internet * gateway advertisement scheme for connecting mobile ad hoc networks to the Internet Jeongkeun Lee (), Dongkyun Kim (2), J.J.Garcia-Luna-Aceves (3), Yanghee Choi (), Jihyuk Choi (4), Sangwoo Nam (4) ()

More information

Chapter 6. What happens at the Transport Layer? Services provided Transport protocols UDP TCP Flow control Congestion control

Chapter 6. What happens at the Transport Layer? Services provided Transport protocols UDP TCP Flow control Congestion control Chapter 6 What happens at the Transport Layer? Services provided Transport protocols UDP TCP Flow control Congestion control OSI Model Hybrid Model Software outside the operating system Software inside

More information

This presentation covers Unsolicited Events notification and handling, and standalone acknowledgments used to confirm reliable delivery or

This presentation covers Unsolicited Events notification and handling, and standalone acknowledgments used to confirm reliable delivery or This presentation covers Unsolicited Events notification and handling, and standalone acknowledgments used to confirm reliable delivery or communicate errors. 1 2 UE packets are used to asynchronously

More information

A COMPARISON OF IMPROVED AODV ROUTING PROTOCOL BASED ON IEEE AND IEEE

A COMPARISON OF IMPROVED AODV ROUTING PROTOCOL BASED ON IEEE AND IEEE Journal of Engineering Science and Technology Vol. 4, No. 2 (2009) 132-141 School of Engineering, Taylor s University College A COMPARISON OF IMPROVED AODV ROUTING PROTOCOL BASED ON IEEE 802.11 AND IEEE

More information

Evaluating the Eifel Algorithm for TCP in a GPRS Network

Evaluating the Eifel Algorithm for TCP in a GPRS Network Evaluating the Eifel Algorithm for TCP in a GPRS Network Andrei Gurtov University of Helsinki Finland e-mail: Andrei.Gurtov@cs.Helsinki.FI Reiner Ludwig Ericsson Research Germany e-mail: Reiner.Ludwig@Ericsson.com

More information

Bluetooth ACL Packet Selection Via Maximizing the Expected Throughput Efficiency of ARQ Protocol

Bluetooth ACL Packet Selection Via Maximizing the Expected Throughput Efficiency of ARQ Protocol Bluetooth ACL Packet Selection Via aximizing the Expected Throughput Efficiency of AQ Protocol Xiang Li 1,2,*, an-tian Li 1, Zhen-Guo Gao 2, and Li-Ning Sun 1 1 obot esearch Institute, Harbin Institute

More information

Outline: Connecting Many Computers

Outline: Connecting Many Computers Outline: Connecting Many Computers Last lecture: sending data between two computers This lecture: link-level network protocols (from last lecture) sending data among many computers 1 Review: A simple point-to-point

More information

16.682: Communication Systems Engineering. Lecture 17. ARQ Protocols

16.682: Communication Systems Engineering. Lecture 17. ARQ Protocols 16.682: Communication Systems Engineering Lecture 17 ARQ Protocols Eytan Modiano Automatic repeat request (ARQ) Break large files into packets FILE PKT H PKT H PKT H Check received packets for errors Use

More information

Mean Waiting Delay for Web Object Transfer in Wireless SCTP Environment

Mean Waiting Delay for Web Object Transfer in Wireless SCTP Environment This full text paper was peer reviewed at the direction of IEEE Communications Society subject matter experts for publication in the IEEE ICC 009 proceedings Mean aiting Delay for eb Object Transfer in

More information

Introduction to Protocols

Introduction to Protocols Chapter 6 Introduction to Protocols 1 Chapter 6 Introduction to Protocols What is a Network Protocol? A protocol is a set of rules that governs the communications between computers on a network. These

More information

Guide To TCP/IP, Second Edition UDP Header Source Port Number (16 bits) IP HEADER Protocol Field = 17 Destination Port Number (16 bit) 15 16

Guide To TCP/IP, Second Edition UDP Header Source Port Number (16 bits) IP HEADER Protocol Field = 17 Destination Port Number (16 bit) 15 16 Guide To TCP/IP, Second Edition Chapter 5 Transport Layer TCP/IP Protocols Objectives Understand the key features and functions of the User Datagram Protocol (UDP) Explain the mechanisms that drive segmentation,

More information

Transport Protocols Reading: Sections 2.5, 5.1, and 5.2

Transport Protocols Reading: Sections 2.5, 5.1, and 5.2 Transport Protocols Reading: Sections 2.5, 5.1, and 5.2 CE443 - Fall 1390 Acknowledgments: Lecture slides are from Computer networks course thought by Jennifer Rexford at Princeton University. When slides

More information

UAMAC: Unidirectional-Link Aware MAC Protocol for Heterogeneous Ad Hoc Networks

UAMAC: Unidirectional-Link Aware MAC Protocol for Heterogeneous Ad Hoc Networks UAMAC: Unidirectional-Link Aware MAC Protocol for Heterogeneous Ad Hoc Networks Sung-Hee Lee, Jong-Mu Choi, and Young-Bae Ko College of Information and Communication, Ajou University, South Korea shlee@dmc.ajou.ac.kr,

More information

Analyzation of Automatic Repeat Request (ARQ) Protocols

Analyzation of Automatic Repeat Request (ARQ) Protocols RESEARCH ARTICLE OPEN ACCESS Analyzation of Automatic Repeat Request (ARQ) Protocols 1 Jeshvina.S, 2 Sneha.P, 3 Saraanya.S Final year BCA, Dept of Computer Science New Horizon College Kasturinagar, Bangalore

More information