Functions of physical layer:

Similar documents
Outline. CS5984 Mobile Computing. IEEE 802 Architecture 1/7. IEEE 802 Architecture 2/7. IEEE 802 Architecture 3/7. Dr. Ayman Abdel-Hamid, CS5984

Chapter 6 Medium Access Control Protocols and Local Area Networks

WLAN Technology: LAN: a review WLAN: applications & key parameters. protocol architectures

CHAPTER 11 WIRELESS LAN TECHNOLOGY AND THE IEEE WIRELESS LAN STANDARD

Overview of Wireless LANs

04/11/2011. Wireless LANs. CSE 3213 Fall November Overview

Local Area Networks. Lecture 17 Fall Token Ring and FDDI

Local Area Networks NETW 901

Data and Computer Communications. Chapter 13 Wireless LANs

SEN366 (SEN374) (Introduction to) Computer Networks

Overview Computer Networks. Single Cell Wireless LAN Configuration. Applications - LAN Extension. Applications Cross-Building Interconnect

Actual4Test. Actual4test - actual test exam dumps-pass for IT exams

IEEE Technical Tutorial. Introduction. IEEE Architecture

IEEE MAC Sublayer (Based on IEEE )

Multiple Access Links and Protocols

IEEE Wireless LANs Part I: Basics

Data and Computer Communications

Wireless Local Area Part 2

Mobile & Wireless Networking. Lecture 7: Wireless LAN

IEEE Wireless LANs

CHAPTER 8: LAN Standards

Wireless Network Security

Wireless Local Area Networks (WLANs) Part I

ICE 1332/0715 Mobile Computing (Summer, 2008)

Introduction to Wireless Networking CS 490WN/ECE 401WN Winter Lecture 4: Wireless LANs and IEEE Part II

standard. Acknowledgement: Slides borrowed from Richard Y. Yale

Data Communications. Data Link Layer Protocols Wireless LANs

Lecture 16: QoS and "

Chapter 6 Wireless and Mobile Networks. Csci 4211 David H.C. Du

Advanced Computer Networks WLAN

Lesson 2-3: The IEEE x MAC Layer

4.3 IEEE Physical Layer IEEE IEEE b IEEE a IEEE g IEEE n IEEE 802.

Wireless Communications

Institute of Electrical and Electronics Engineers (IEEE) IEEE standards

Computer Networks. Wireless LANs

Wireless LANs. ITS 413 Internet Technologies and Applications

Guide to Wireless Communications, Third Edition. Objectives

MSIT 413: Wireless Technologies Week 8

CSC344 Wireless and Mobile Computing. Department of Computer Science COMSATS Institute of Information Technology

Wireless Networking & Mobile Computing

Investigation of WLAN

original standard a transmission at 5 GHz bit rate 54 Mbit/s b support for 5.5 and 11 Mbit/s e QoS

Wireless Communication and Networking CMPT 371

Wireless and Mobile Networks

Wireless# Guide to Wireless Communications. Objectives

Introduction to IEEE

Mobile Communications Chapter 7: Wireless LANs

Status of P Sub-Specification

Princess Nora Bint Abdulrahman University College of computer and information sciences Networks department Networks Security (NET 536)

Topics for Today. More on Ethernet. Wireless LANs Readings. Topology and Wiring Switched Ethernet Fast Ethernet Gigabit Ethernet. 4.3 to 4.

Wireless LAN -Architecture

Topic 4. Wireless LAN IEEE

IEEE Notes. 1 Local Area Networks. 2 Protocols. 3 Network Model

Lecture (08) Wireless Traffic Flow and AP Discovery

Chapter 11 in Stallings 10 th Edition

Wireless Communication and Networking CMPT 371

Multimedia Communication Services Traffic Modeling and Streaming

LAN PROTOCOL ARCHITECTURE

Mobile devices for wireless

Wireless Local Area Networks. Networks: Wireless LANs 1

Laboratory of Nomadic Communication. Quick introduction to IEEE

Computer Communication III

Nomadic Communications WLAN MAC Fundamentals

IEEE WLANs (WiFi) Part II/III System Overview and MAC Layer

Overview. Wireless networks basics IEEE (Wi-Fi) a/b/g/n ad Hoc MAC protocols ad Hoc routing DSR AODV

Mobile Communications Chapter 7: Wireless LANs

Introduction to Wireless Networking CS 490WN/ECE 401WN Winter 2007

Analysis of IEEE e for QoS Support in Wireless LANs

ET4254 Communications and Networking 1

Wireless LANs. Outline. Outline II. Benefits Applications Technologies Issues Configurations Overview of Standard

Optional Point Coordination Function (PCF)

CSMC 417. Computer Networks Prof. Ashok K Agrawala Ashok Agrawala. Fall 2018 CMSC417 Set 1 1

IEEE WLAN (802.11) Copyright. Nomadic Communications

Chapter 15 Local Area Network Overview

Chapter 7: Wireless LANs

WLAN (802.11) Nomadic Communications. Renato Lo Cigno - Tel: Dipartimento di Ingegneria e Scienza dell Informazione

02/21/08 TDC Branch Offices. Headquarters SOHO. Hot Spots. Home. Wireless LAN. Customer Sites. Convention Centers. Hotel

Chapter 7: Wireless LANs

WIRELESS LANS. By: M. Habibullah Pagarkar Mandar Gori Rajesh Jaiswal

WLAN The Wireless Local Area Network Consortium

Wireless Local Area Networks (WLANs)) and Wireless Sensor Networks (WSNs) Computer Networks: Wireless Networks 1

Multiple Access Links and Protocols

MAC in /20/06

Part 11: Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) Specifications. IEEE Computer Society

Master thesis 60 credits

Unit 7 Media Access Control (MAC)

CS4/MSc Computer Networking. Lecture 12: Wireless Local Area Networks

Mobile Communications Chapter 7: Wireless LANs

Outline. EEC-682/782 Computer Networks I. Multiple Access Protocols. IEEE 802 Standards

ECE442 Communications Lecture 3. Wireless Local Area Networks

Local Area Network Overview

Mobile Communications Chapter 7: Wireless LANs

Vehicle Networks. Wireless Local Area Network (WLAN) Univ.-Prof. Dr. Thomas Strang, Dipl.-Inform. Matthias Röckl

WiFi Overview. 2/14/2005 Pietrosemoli 1

Mohammad Hossein Manshaei 1393

Overview : Computer Networking. Spectrum Use Comments. Spectrum Allocation in US Link layer challenges and WiFi WiFi

Wireless Communication Session 4 Wi-Fi IEEE standard

4. Wi-Fi Access Technologies

Architecture. Copyright :I1996 IEEE. All rights reserved. This contains parts from an unapproved draft, subject to change

Introduction to Wireless LAN

Transcription:

Chapter 14

Functions of physical layer: Encoding/decoding of signals Preamble generation/removal (for synchronization) Bit transmission/reception Includes specification of the transmission medium

Functions of medium access control (MAC) layer: On transmission, assemble data into a frame with address and error detection fields On reception, disassemble frame and perform address recognition and error detection Govern access to the LAN transmission medium Functions of logical link control (LLC) Layer: Provide an interface to higher layers and perform flow and error control

The logic required to manage access to a shared-access medium not found in traditional layer 2 data link control For the same LLC, several MAC options may be provided

MAC control Contains Mac protocol information Destination MAC address Destination physical attachment point Source MAC address Source physical attachment point CRC Cyclic redundancy check

Characteristics of LLC not shared by other control protocols: Must support multiaccess, shared-medium nature of the link Relieved of some details of link access by MAC layer

Unacknowledged connectionless service No flow- and error-control mechanisms Data delivery not guaranteed Connection-mode service Logical connection set up between two users Flow- and error-control provided Acknowledged connectionless service Cross between previous two Datagrams acknowledged No prior logical setup

LLC uses asynchronous balanced mode of operation of HDLC (type 2 operation) LLC supports unacknowledged connectionless service (type 1 operation) LLC supports acknowledged connectionless service (type 3 operation) LLC permits multiplexing by the use of LLC service access points (LSAPs)

Distribution system (DS) Access point (AP) Basic service set (BSS) Stations competing for access to shared wireless medium Isolated or connected to backbone DS through AP Extended service set (ESS) Two or more basic service sets interconnected by DS

Distribution service Used to exchange MAC frames from station in one BSS to station in another BSS Integration service Transfer of data between station on IEEE 802.11 LAN and station on integrated IEEE 802.x LAN

No transition Stationary or moves only within BSS BSS transition Station moving from one BSS to another BSS in same ESS ESS transition Station moving from BSS in one ESS to BSS within another ESS

Association Establishes initial association between station and AP Reassociation Enables transfer of association from one AP to another, allowing station to move from one BSS to another Disassociation Association termination notice from station or AP

Authentication Establishes identity of stations to each other Deathentication Invoked when existing authentication is terminated Privacy Prevents message contents from being read by unintended recipient

MAC layer covers three functional areas: Reliable data delivery Access control Security

More efficient to deal with errors at the MAC level than higher layer (such as TCP) Frame exchange protocol Source station transmits data Destination responds with acknowledgment (ACK) If source doesn t receive ACK, it retransmits frame Four frame exchange Source issues request to send (RTS) Destination responds with clear to send (CTS) Source transmits data Destination responds with ACK

Short IFS (SIFS) Shortest IFS Used for immediate response actions Point coordination function IFS (PIFS) Midlength IFS Used by centralized controller in PCF scheme when using polls Distributed coordination function IFS (DIFS) Longest IFS Used as minimum delay of asynchronous frames contending for access

SIFS Acknowledgment (ACK) Clear to send (CTS) Poll response PIFS Used by centralized controller in issuing polls Takes precedence over normal contention traffic DIFS Used for all ordinary asynchronous traffic

Frame Control frame type, control information Duration/connection ID channel allocation time Addresses context dependant, types include source and destination Sequence control numbering and reassembly Frame body MSDU or fragment of MSDU Frame check sequence 32-bit CRC

Protocol version 802.11 version Type control, management, or data Subtype identifies function of frame To DS 1 if destined for DS From DS 1 if leaving DS More fragments 1 if fragments follow Retry 1 if retransmission of previous frame

Power management 1 if transmitting station is in sleep mode More data Indicates that station has more data to send WEP 1 if wired equivalent protocol is implemented Order 1 if any data frame is sent using the Strictly Ordered service

Power save poll (PS-Poll) Request to send (RTS) Clear to send (CTS) Acknowledgment Contention-free (CF)-end CF-end + CF-ack

Data-carrying frames Data Data + CF-Ack Data + CF-Poll Data + CF-Ack + CF-Poll Other subtypes (don t carry user data) Null Function CF-Ack CF-Poll CF-Ack + CF-Poll

Association request Association response Reassociation request Reassociation response Probe request Probe response Beacon

Announcement traffic indication message Dissociation Authentication Deauthentication

Open system authentication Exchange of identities, no security benefits Shared Key authentication Shared Key assures authentication

Direct-sequence spread spectrum Operating in 2.4 GHz ISM band Data rates of 1 and 2 Mbps Frequency-hopping spread spectrum Operating in 2.4 GHz ISM band Data rates of 1 and 2 Mbps Infrared 1 and 2 Mbps Wavelength between 850 and 950 nm

IEEE 802.11a Makes use of 5-GHz band Provides rates of 6, 9, 12, 18, 24, 36, 48, 54 Mbps Uses orthogonal frequency division multiplexing (OFDM) Subcarrier modulated using BPSK, QPSK, 16-QAM or 64-QAM IEEE 802.11b Provides data rates of 5.5 and 11 Mbps Complementary code keying (CCK) modulation scheme