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

Similar documents
Wireless# Guide to Wireless Communications. Objectives

Chapter 3.1 Acknowledgment:

Computer Networks. Wireless LANs

Guide to Wireless Communications, Third Edition. Objectives

Wireless Local Area Network (IEEE )

Overview of Wireless LANs

Local Area Networks NETW 901

Mohammad Hossein Manshaei 1393

Chapter 6 Medium Access Control Protocols and Local Area Networks

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

ICE 1332/0715 Mobile Computing (Summer, 2008)

WNC-0300USB. 11g Wireless USB Adapter USER MANUAL

Data Communications. Data Link Layer Protocols Wireless LANs

Mobile & Wireless Networking. Lecture 7: Wireless LAN

Mobile Communications Chapter 7: Wireless LANs

IEEE Wireless LAN draft Standard

Advanced Computer Networks WLAN

Wireless Protocols. Training materials for wireless trainers

WiFi Networks: IEEE b Wireless LANs. Carey Williamson Department of Computer Science University of Calgary Winter 2018

Data and Computer Communications

Page 1. Wireless LANs: Design Requirements. Evolution. EEC173B/ECS152C, Winter Wireless LANs

Technical Introduction

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

Wireless technology Principles of Security

Wireless LAN. Access Point. Provides network connectivity over wireless media

Lecture Objectives. Lecture 1 Wireless Environment and Wireless LANs. Agenda (1) Agenda (2) Wireless Spectrum (1)

Data and Computer Communications. Chapter 13 Wireless LANs

Announcements : Wireless Networks Lecture 11: * Outline. Power Management. Page 1

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

Mobile Communications Chapter 7: Wireless LANs

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

Wireless Local Area Networks. Networks: Wireless LANs 1

Wireless and Mobile Networks

Mobile Communications Chapter 7: Wireless LANs

IEEE Wireless LANs

Wireless Communication Session 4 Wi-Fi IEEE standard

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

Mobile Communications Chapter 7: Wireless LANs

Lecture 16: QoS and "

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

Wireless Local Area Networks (WLANs) Part I

Investigation of WLAN

MSIT 413: Wireless Technologies Week 8

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

Functions of physical layer:

Wireless Local Area Networks (WLANs) and Wireless Sensor Networks (WSNs) Primer. Computer Networks: Wireless LANs

Introduction to IEEE

IEEE Technical Tutorial. Introduction. IEEE Architecture

Chapter 7. Basic Wireless Concepts and Configuration. Part I

Enabling Technologies

Wireless LANs. ITS 413 Internet Technologies and Applications

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

Shared Access Networks Wireless. 1/27/14 CS mywireless 1

standard. Acknowledgement: Slides borrowed from Richard Y. Yale

Local Area Networks. Lecture 17 Fall Token Ring and FDDI

SEN366 (SEN374) (Introduction to) Computer Networks

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

Chapter 10: Wireless LAN & VLANs

MAC in /20/06

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

Wireless Communication and Networking CMPT 371

March 1996 doc.: IEEE P /49C Tutorial MAC Entity: MAC Basic Access Mechanism Privacy and Access Control. MAC Layer Management

Lecture 23 Overview. Last Lecture. This Lecture. Next Lecture ADSL, ATM. Wireless Technologies (1) Source: chapters 6.2, 15

Chapter 7: Wireless LANs

Author: Bill Buchanan. Wireless LAN. Unit 2: Wireless Fundamentals

I N D E X Numerics 100 Mbps WLANs, WLANs, 88

Chapter 7: Wireless LANs

CHAPTER 8: LAN Standards

...IEEE What is IEEE compliance. Introduction. WaveLAN Sales Bulletin May IEEE Committee

CSNT 180 Wireless Networking. Chapter 7 WLAN Terminology and Technology

Introduction to Wireless LAN

Wireless Local Area Part 2

Chapter 3: Overview 802 Standard

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

CWNP PW Certified Wireless Analysis Professional. Download Full Version :

Basic processes in IEEE networks

Announcements / Wireless Networks and Applications Lecture 9: Wireless LANs Wireless. Regular Ethernet CSMA/CD.

Nomadic Communications WLAN MAC Fundamentals

Computer Communication III

Last Lecture: Data Link Layer

Institute of Electrical and Electronics Engineers (IEEE) IEEE standards

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

Wireless Communication and Networking CMPT 371

Status of P Sub-Specification

Wireless# Guide to Wireless Communications. Objectives

Wireless Data Networking IEEE & Overview of IEEE b

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

outline background & overview mac & phy wlan management security

WIRELESS LAN (WLAN) Efthyvoulos C. Kyriacou (PhD) Assoc. Prof. Computer Science and Engineering Department

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

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

Analysis of IEEE e for QoS Support in Wireless LANs

Guide to Wireless Communications, 3 rd Edition. Objectives

WLAN 1 IEEE Manuel Ricardo. Faculdade de Engenharia da Universidade do Porto

Mobile Computing IEEE Standard 9/11/12. CSE 40814/60814 Fall 2012

IEEE MAC Sublayer (Based on IEEE )

3.1. Introduction to WLAN IEEE

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

Unit 7 Media Access Control (MAC)

Wireless LAN -Architecture

Transcription:

802.11 Architecture Copyright :I1996 IEEE. All rights reserved. This contains parts from an unapproved draft, subject to change What is unique about wireless? Difficult media - interference and noise - quality varies over space and time - shared with "unwanted" 802.11 devices - shared with non-802 devices (unlicensed spectrum, microwave ovens) Full connectivity cannot be assumed - "hidden node" problem Multiple international regulatory requirements Copyright :I1996 IEEE. All rights reserved. This conlains parts from an unapproved draft. subject to change 2 1 Greg Ennis, Symbol Technologies 1

Medium Variations Copyright 1996 IEEE, All rights reserved. This contains parts from an unapproved draft, subject to change 3 Uniqueness of Wireless (continued) Mobility - variation in link reliability - battery usage: requires power management - want "seamless" connections Security - no physical boundaries - overlapping LANs Copyright 1996 IEEE, All rights reserved. This contains parts from an unapproved draft. subject to change 4 2 Greg Ennis, Symbol Technologies 2

802.11 Tutorial Requirements March 96 Single MAC to support multiple PHYs. - Support single and multiple channel PHVs. - PHVs with different "Medium Sense" characteristics. Should allow overlap of multiple networks in the same area and channel space. Need to be "Robust for Interference". - Microwave, other non-802.11 interferers. - Co-channel interference. Need mechanisms to deal with "Hidden Nodes". Need provisions for Time Bounded Services. Copyright@1996IEEE,AII rights reserved. This contains paru from an unapproved draft, subject to change 5 Architecture Overview One MAC supporting multiple PHYs - currently Frequency Hopping, Direct Sequence and Infrared PHVs Two configurations - "Independent" (ad hoc) and "Infrastructure" CSMAICA (collision avoidance) with optional "point coordination" Copydght 1996 IEEE, All dghts reserved. This contains parts from an unapproved draft, subject to change 6 3 Greg Ennis, Symbol Technologies 3

802.11 Protocol Entities MAC PHY -MAC Sublayer MAC Layer Management - - Management PLCP Sublayer PHYLayer Management - PMD Sublayer I I Station Copyright 1996 IEEE, All rights reserved. This contains parts from an unapproved draft, subject to change 7 802.11 Protocol Architecture MAC Entity - basic access mechanism - fragmentation - encryption MAC Layer Management Entity - synchronization - power management - roaming - MACMIB Physical Layer Convergence Protocol (PLCP) - PHY-specific, supports common PHY SAP - provides Clear Channel Assessment signal (carrier sense) Copyright (H996 IEEE, AU rights reserved. This contains partoi from an unapproved draft, subject to change B 4 Greg Ennis, Symbol Technologies 4

802.11 Protocol Architecture (cont.) Physical Medium Dependent Sublayer (PMD) - modulation and encoding PHY Layer Management - channel tuning - PHYMIB Station Management - interacts with both MAC Management and PHV Management Copyright :II996 IEEE. All rights reserved. This contains parts from an unapproved draft, subject to change 9 802.11 Configurations - Independent Independent - one "Basic Service Set", BSS - "Ad Hoc" network - direct communication - limited coverage area Copyright 1996 IEEE. All rights reserved. This contains parts from an unapproved draft. subject to change 10 5 Greg Ennis, Symbol Technologies 5

802.11 Configurations - Infrastructure DLSTRlBflTION SY.STE~' Infrastructure - Access Points and stations Distribution System interconnects Multiple Cells via Access Points to form a single Network. - extends wireless coverage area Copyright 1996 IEEE, All rights reserved. This contains parts from an unapproved draft, subject 10 change 11 Distribution System Used to interconnect wireless cells - multiple BSS connected together form an ESS, Extended Service Set - Allows mobile stations to access fixed resources Not part of 802.11 standard - could be bridged IEEE LANs, wireless, other networks... - Distribution System Services are defined Copyright 1996 IEEE, All rights reserved. This contains parts from an unapproved draft, subject to change 12 6 Greg Ennis, Symbol Technologies 6

Access Points Stations select an AP and "associate" with it Support roaming Provide other functions - time synchronization (beaconing) - power management support - point coordination function Traffic typically (but not always) flows through AP - direct communication possible Copyright 1996 IEEE. All rights reserved. This contains parts from an unapproved draft. subject to change 13 802.11 Defines the Airwaves IF The airwaves interface between stations (including that between station and AP) is standardized - PHYand MAC No exposed MAC/PHV interface specified No exposed interface to Distribution System - required OS services are defined Internals of Distribution System not defined Copyright 1996 IEEE. All rights reserved. This contains parts from an unapproved draft. subject to change 14 7 Greg Ennis, Symbol Technologies 7

802.11 Tutorial MAC Services Asynchronous MSDU Data Delivery - provided to LLC (2304 octet maximum) March 96 Time Bounded Services - optional point coordination function Security Services - confidentiality, authentication, access control Management Services - scanning, joining, power management Copyright 1996 IEEE, All rights reserved. This contains parts from an unapproved draft, subject to change 15 MAC Functionality Independent and Infrastructure configuration support - Each ass has a unique 48 bit address - Each ESS has a variable length address CSMA with collision avoidance - MAC-level acknowledgment - allows for RTS/CTS exchanges» hidden node protection - MSDU fragmentation - "Point Coordination" option» AP polling Copyright 1996 IEEE, All rights reserved. This contains parts from an unapproved draft, subject to change 16 8 Greg Ennis, Symbol Technologies 8

MAC Functionality (continued) Roaming support within an ESS - station scans for APs, association handshakes Power management support - stations may power themselves down - AP buffering, distributed approach for IBSS Authentication and privacy - Optional support of "Wired Equivalent Privacy" (WEP) - Authentication handshakes defined Copyright 1996 IEEE. All rights reserved. This contains parts from an unapproved draft, subject to change 17 PHY Layer Services PHV_DATA transfers - multiple rates Clear Channel Assessment (CCA) - carrier sense PHV Management - channel tuning Copyright 1996 IEEE, All rights reserved. This contains parts from an unapproved draft, subject to change 18 9 Greg Ennis, Symbol Technologies 9

Three PHYs Frequency Hop Spread Spectrum - 2.4 GHz band, 1 and 2 Mbps transmission - 2GFSK, 4GFSK - hop over 79 channels (North America) Direct Sequence Spread Spectrum - 2.4 GHz band, 1 and 2 Mbps transmission - DBPSK, DQPSK - 11 chip Barker sequence BasebandlR - Diffuse infrared -1 and 2 Mbps transmission, 16-PPM and 4-PPM Copyright 1996 IEEE. All rights reserved. This contains parts from an unapproved draft. subject to change 19 10 Greg Ennis, Symbol Technologies 10