802.11 specifications overview. 802.11 Specifications MAC  Specification of layers below LLC  Associated management/control interfaces MIB Control Applications.

Slides:



Advertisements
Similar presentations
Networks: Wireless LANs1 Wireless Local Area Networks.
Advertisements

IEEE Overview Onno W. Purbo
Lecture 5: IEEE Wireless LANs (Cont.). Mobile Communication Technology according to IEEE (examples) Local wireless networks WLAN a.
Physical layer. PHY functionalities Wireless transmission mechanism for the MAC Assessing the state of the wireless medium and reporting it to.
– Wireless PHY and MAC Stallings Types of Infrared FHSS (frequency hopping spread spectrum) DSSS (direct sequence.
© Kemal AkkayaWireless & Network Security 1 Department of Computer Science Southern Illinois University Carbondale CS591 – Wireless & Network Security.
Comp 361, Spring 20056:Basic Wireless 1 Chapter 6: Basic Wireless (last updated 02/05/05) r A quick intro to CDMA r Basic
Wireless# Guide to Wireless Communications
Wireless Local Area Networks By Edmund Gean August 2, 2000.
Network Technology CSE Network Technology CSE3020 Week 9.
Performance of DS-CDMA Protocols in Wireless LANS M.Parikh, P.Sharma, R.Garg, K. Chandra, C. Thompson Center for Advanced Computation and Telecommunications.
P. Bhagwat Specification overview. P. Bhagwat Specifications PLCP Sublayer PHY layer Management PMD Sublayer MAC sublayer MAC Layer Management.
1 CSE401n:Computer Networks Lecture 16 Wireless Link & LANs WS: ch-14 KR: 5.7.
Wireless Networking So we talked about wired networks. What about wireless?
Presented By: Nishant Divecha
Networks: Wireless LANs1 Wireless Local Area Networks.
20 – Collision Avoidance, : Wireless and Mobile Networks6-1.
HY539: Mobile Computing and Wireless Networks
Networks: Wireless LANs1 Wireless Local Area Networks.
6: Wireless and Mobile Networks6-1 Chapter 6: Wireless and Mobile Networks Background: r # wireless (mobile) phone subscribers now exceeds # wired phone.
110/15/2003CS211 IEEE Standard Why we study this standard: overall architecture physical layer spec. –direct sequence –frequency hopping MAC layer.
Module contents Technologies overview Spread Spectrum Modulation
Wireless Local Area Networks (WLAN)
WLAN b a Johan Montelius
8/7/20151 Mobile Computing COE 446 Wireless Multiple Access Tarek Sheltami KFUPM CCSE COE hthttp://faculty.kfupm.edu.sa/coe/tarek/coe446.htm Principles.
6: Wireless and Mobile Networks6-1 Elements of a wireless network network infrastructure wireless hosts r laptop, PDA, IP phone r run applications r may.
2/12/20021 IEEE Wireless Local Area Networks The future is wireless Presented by Tamer Khattab and George Wong Prepared for EECE571N - Advanced.
CS640: Introduction to Computer Networks Aditya Akella Lecture 22 - Wireless Networking.
Lecture #2 Chapter 14 Wireless LANs.
Overview of Wireless LANs Use wireless transmission medium Issues of high prices, low data rates, occupational safety concerns, & licensing requirements.
MAC layer Taekyoung Kwon. Media access in wireless - start with IEEE In wired link, –Carrier Sense Multiple Access with Collision Detection –send.
1 Kyung Hee University Chapter 15 Wireless LANs. 2 Kyung Hee University IEEE 802 Standards Working Groups WiMAX, an acronym that stands for Worldwide.
14.1 Chapter 14 Wireless LANs Copyright © The McGraw-Hill Companies, Inc. Permission required for reproduction or display.
IEEE Concepts 資工碩職一 周俊弘. Introduction Overview of the Emerging Standard Architecture DSSS v.s. FHSS OFDM Modulation Reference.
CWNA Guide to Wireless LANs, Second Edition Chapter Four IEEE Physical Layer Standards.
Data and Computer Communications Eighth Edition by William Stallings Chapter 17 – Wireless LANs.
Architecture of an infrastructure network Distribution System Portal 802.x LAN Access Point LAN BSS LAN BSS 1 Access Point STA.
CSC 581 Communication Networks II Chapter 6c: Local Area Network (Wireless LAN – ) Dr. Cheer-Sun Yang.
Chapter 6 Medium Access Control Protocols and Local Area Networks Wireless LAN.
5: DataLink Layer 5a-1 Multiple Access protocol. 5: DataLink Layer 5a-2 Multiple Access Links and Protocols Three types of “links”: r point-to-point (single.
Universität Karlsruhe Institut für Telematik ECE 591
Chapter 15 Wireless LANs 15.# 1
WLAN 1. IEEE Overview Adopted in 1997 Defines: MAC sublayer MAC management protocols and services Physical (PHY) layers – IR – FHSS – DSSS.
Wireless Protocols. 2 Outline MACA 3 ISM: Industry, Science, Medicine unlicensed frequency spectrum: 900Mhz, 2.4Ghz, 5.1Ghz, 5.7Ghz.
CSCI 465 D ata Communications and Networks Lecture 23 Martin van Bommel CSCI 465 Data Communications & Networks 1.
Copyright © 2003 OPNET Technologies, Inc. Confidential, not for distribution to third parties. Wireless LANs Session
Wireless LAN Requirements (1) Same as any LAN – High capacity, short distances, full connectivity, broadcast capability Throughput: – efficient use wireless.
1 Wireless Networks Lecture 26 Wireless LAN / IEEE Dr. Ghalib A. Shah.
Wireless LAN Provides network connectivity over wireless media An Access Point (AP) is installed to act as Bridge between Wireless and Wired Network.
Lecture 7 CSMA and Spread Spectrum Dr. Ghalib A. Shah
CT301 lecture7 10/29/2015 Lect 7 NET301.
Chapter 15 Wireless LANs.
Computer Communication Networks
Lecture 27 WLAN Part II Dr. Ghalib A. Shah
Wireless Local Area Networks (LANs)
IEEE Wireless LAN wireless LANs: untethered (often mobile) networking
CSE 4215/5431: Mobile Communications Winter 2011
Wireless LAN 第一組 電機四 林長寬 B /11/24.
Specification overview
Chapter 6 Medium Access Control Protocols and Local Area Networks
CSE 4215/5431: Mobile Communications Winter 2010
Specification overview
CT301 lecture7 10/29/2015 Lect 7 NET301.
Specification overview
Specification overview
Performance Evaluation of an Integrated-service IEEE Network
Specification overview
Specification overview
MITP 413: Wireless Technologies Week 8
Specification overview
Presentation transcript:

specifications overview

Specifications MAC  Specification of layers below LLC  Associated management/control interfaces MIB Control Applications DSSS FH IR OFDM PHY WEP LLC MAC Mgmt

Specifications PLCP Sublayer PHY layer Management PMD Sublayer MAC sublayer MAC Layer Management PHY Service Interface PHY Mgmt Service Interface LLC MAC Service Interface MAC Mgmt Service Interface LLC MIB DSSS FH IR OFDM PHY MAC WEP MAC Mgmt

Specifications PHY Layer PHY Management MAC sublayer MAC Management PHY Service Interface (clause 12) PHY Mgmt Service Interface (clause 13) LLC MAC Service Interface (clause 6) MAC framing (clause 7) MAC operation (clause 9) WEP (clause 8) State Machines (Annex C) Protocols (clause 11) State Machines (Annex C) MIBs (Annex D) FH (clause 14) DSSS (clause 15) Infrared (clause 16) OFDM (clause 17) High rate DSSS (clause 18) MAC Mgmt Service Interface (clause 10) MIBs (Annex D)

System Architecture Basic Service Set (BSS): a set of stations which communicate with one another Independent Basic Service Set (IBSS) only direct communication possible no relay function Infrastructure Basic Service Set (BSS) AP provides connection to wired network relay function stations not allowed to communicate directly

Extended Service Set ESS and all of its stations appear to be a single MAC layer AP communicate among themselves to forward traffic Station mobility within an ESS is invisible to the higher layers ESS: a set of BSSs interconnected by a distribution system (DS)

PHY MIB Control Applications DSSS FH IR OFDM PHY MAC WEP LLC MAC Mgmt

PHY MAC Protcol Data Unit (MPDU) MAC Protcol Data Unit (MPDU) PLCP header MAC Protcol Data Unit (MPDU) PLCP header MAC Protcol Data Unit (MPDU) Sender Receiver Physical Media Dependent (PMD) layer PMD layer MAC PHY High rate (DSSS) PHY 11, 5.5 Mbps b Direct Sequence Spread Spectrum (DSSS) PHY 1,2 Mbps Frequency Hopping Spread Spectrum (FHSS) PHY 1, 2 Mbps Infrared (IR) PHY 1,2 Mbps Higher rate (DSSS) PHY 20+ Mbps g 2.4 GHz Orthogonal Frequency Division Multiplexing (OFDM) PHY 6,9,12,18,24,36,48,54 Mbps a 5.7 GHz

DSSS PHY  Baseband signal is spread using Barker word (10 dB processing gain)  Spread signal occupies approximately 22 Mhz bandwidth  Receiver recovers the signal by applying the same Barker word  DSSS provides good immunity against narrowband interferer  CDMA (multiple access) capability is not possible MPDUPreambleHeader 1 Mbps 1, 2 Mbps DPSK modulation Transmitter baseband signal MPDUPreambleHeader 1 Mbps 1, 2 Mbps Received signal after despreading DPSK de-modulation Spread the signal using Barker word (11 bits) +1, -1, +1, +1, -1, +1, +1, +1, -1, -1, -1 Transmitted signal after spreading

DSSS PHY  Direct sequence spread spectrum  Each channel is 22 Mhz wide  Symbol rate  1 Mb/s with DBPSK modulatio  2 Mbps with DQPSK modulation  11, 5.5 Mb/ps with CCK modulation  Max transmit power  100 Mw 22 Mhz 83.5 Mhz Ch 1 Ch 6 Ch 11

MAC MIB Control Applications DSSS FH IR OFDM PHY MAC WEP LLC MAC Mgmt

MAC  Carrier sensing (CSMA)  Rules:  carrier ==> do not transmit  no carrier ==> OK to transmit  But the above rules do not always apply to wireless.  Solution: RTS/CTS  Collision detection (CD)  Does not work over wireless  Therefore, use collision avoidance (CA)  random backoff  priority ack protocol

MAC protocol: CSMA/CA  Use CSMA with collision Avoidance  Based on carrier sense function in PHY called Clear Channel Assessment (CCA)  Reduce collision probability where mostly needed  Efficient backoff algorithm stable at high loads  Possible to implement different fixed priority levels Busy medium Defer access DIFS contention window slot time Next Frame

MAC : Contention window CW min CW max Initial attempt First retransmission Second retransmission Third retransmission Fourth retransmission Fifth retransmission 31 For DSSS PHY Slot time = 20  s