IEEE802.11a 指導教授 : 高永安 學生 : 陳穎俊. PLCP preamble.

Slides:



Advertisements
Similar presentations
1 IEEE MBWA Standard Project Contribution: C xx Date: May RF Performance Evaluation Criteria Dan Gal
Advertisements

© Hitachi, Ltd All rights reserved. ICAO ACP WG-S Hitachi Ltd., 2014/3/28 SARPS Validation Discussion material on Web-EX 1 IP01 ACP WG S_28 Mar.
Physical layer. PHY functionalities Wireless transmission mechanism for the MAC Assessing the state of the wireless medium and reporting it to.
a By Yasir Ateeq. Table of Contents INTRODUCTION TASKS OF TRANSMITTER PACKET FORMAT PREAMBLE SCRAMBLER CONVOLUTIONAL ENCODER PUNCTURER INTERLEAVER.
Rome, February 14, 2013 Status of the Project Report on the first year activities With the support of the Prevention, Preparedness and Consequence.
Doc.: IEEE p Submission September 2008 Carl Kain, Noblis (USDOT) Response to Comments on Optional Enhanced ACR and AACR Values Date:
11ac: 5G WiFi The trigger for 5GHz everywhere Led by Apple and other consumer specialists – In-home device sync, video, backup, etc – “Gigabit WiFi” on.
Implement a 2x2 MIMO OFDM-based channel measurement system (no data yet) at 2.4 GHz Perform baseband processing and digital up and down conversion on Nallatech.
Sattam Al-Sahli – Emad Al-Hemyari –
1 Synchronization for OFDMA System Student: 劉耀鈞 Advisor: Prof. D. W. Lin Time: 2006/3/16.
Todd Stockert IEEE Northcon 2002 October 23, 2002 Physical Layer and RF Testing Overview of Wireless.
Ultra-Wideband Research and Implementation By Jarrod Cook and Nathan Gove Advisors: Dr. Brian Huggins Dr. In Soo Ahn Dr. Prasad Shastry.
Doc.: IEEE /1187r1Sep 2014 Submission Po-Kai Huang (Intel) Slide 1 The Effect of Preamble Error Model on MAC Simulator Date: NameAffiliationsAddressPhone .
Discussions on the Definition of CCA Threshold
2.4-GHZ RF TRANSCEIVER FOR IEEE B WIRELESS LAN UF# UF#
Done by Sarah Hussein 10\05\2012. Trends in modern communication systems place high demands on low power consumption, high-speed transmission, and anti-
Contents Physical layer for IEEE b Channel allocation
1 White Space requirements Gabor Bajko IETF 82 Taipei I-D: draft-ietf-paws-problem-stmt-usecases-rqmts-01.
High survival HF radio network Michele Morelli, Marco Moretti, Luca Sanguinetti CNIT- PISA.
1 Physical Layer ผศ. ดร. อนันต์ ผลเพิ่ม Asst. Prof. Anan Phonphoem, Ph.D. Computer Engineering Department.
Doc.: IEEE /1074r0 Submission September 2004 WKFisher/ARINCSlide 1 IEEE p Draft Review Wayne Fisher Broady Cash ARINC, Inc Annapolis, MD.
NTU Confidential Baseband Transceiver Design for the DVB-Terrestrial Standard Baseband Transceiver Design for the DVB-Terrestrial Standard Advisor : Tzi-Dar.
Doc.: IEEE /337r0 Submission 9 July, 2001 James P. K. Gilb, MobilianSlide 1 Project: IEEE P Working Group for Wireless Personal Area Networks.
Doc.: IEEE /383 Submission November1998November 1998 Jamshid Khun-Jush, ETSI-BRANSlide 1 BRAN#11 PHY Decisions & Issues to Resolved with
Doc.: IEEE s Submission September 2015 Hidetoshi Yokota and Ruben Salazar, Landis&GyrSlide 1 Project: IEEE P Working Group for.
Doc.: IEEE /0909r0 Submission July 2012 Jong S. Baek, AlereonSlide 1 Analysis, simulation and resultant data from a 6-9GHz OFDM MAC/PHY Date:
Doc.: IEEE /1062r0 Submission Zhendong Luo, CATR September 2010 RF Feasibility of 120 MHz Channelization for China Date: Authors: Slide.
Submission Il doc.: IEEE /1363r0 Ilan Sutskover, Intel Slide 1 Regulatory Landscape for Narrowband Transmissions in 11ax Date: Authors:
Doc.: IEEE /235r0 Submission May 2001 Philips SemiconductorsSlide 1 Project: IEEE P Working Group for Wireless Personal Area Networks (WPANs)
802.11b PHY Wireless LANs Page 1 of 23 IEEE b WLAN Physical Layer Svetozar Broussev 16-Feb-2005.
DO Rev B & SVDO Arnab Chakrabarti, Vikram Gupta, Tao Chen 1/12/2016QUALCOMM Confidential and Proprietary1.
Presented by: Ahmad Salim. 2  The acronym WiMAX stands for “Worldwide Interoperability for Microwave Access”. It is based on IEEE standard for.
EDGE Test and Measurements
Doc.: IEEE /618r0 Submission August 2002 Bobby Jose,Slide 1 RRM Requirements discussion on CCA Bobby Jose.
IEEE n Submission Project: IEEE P Working Group for Wireless Personal Area Networks (WPANs) Submission Title:LB93 Comment resolution.
Case Study (ZigBee): Phase IV Transmitter & Receiver Simulation.
Doc.: IEEE /0176r0 Submission Jan 2013 Bo Sun, ZTE/CWPANSlide 1 Date: Presenter: Proposal of Channelization for aj.
Doc.: IEEE /392 Submission November 2000 K. Halford, S. Halford and M. Webster, IntersilSlide 1 OFDM System Performance Karen Halford, Steve Halford.
Doc.: IEEE Submission January 2011 Mark Dawkins (Toumaz) and Anuj Batra (TI)Slide 1 Project: IEEE P Working Group for Wireless.
S , Postgraduate Course in Radio Communications
Doc.: IEEE g Submission March 2010 Tim Schmidl (Texas Instruments), Emmanuel Monnerie (Landis & Gyr), Shusaku Shimada (Yokogawa Co.),
Doc.: IEEE Submission July 2010 Anuj Batra and Mark Dawkins, TI and ToumazSlide 1 Project: IEEE P Working Group for Wireless.
Validation items and major Conditions
Islam Galal Electrical Engineering Department
CCA Sensitivity Date: September 2017
Advanced Wireless Networks
November 2014 Project: IEEE P Working Group for Wireless Personal Area Networks (WPANs) Submission Title: [SRM related functions in ]
March t Project: IEEE P Working Group for Wireless Personal Area Networks (WPANs) Submission Title: [A Simple System Kept Simple]
January 2003 Joe Kwak InterDigital Communications Corporation
Adjacent Channel Rejection Requirement
Preliminary Evaluation of Japan Band Issues
Proposal for IEEE802.11g Receiver Maximum Input Level in OFDM Mode
Partial Proposal: 11n Physical Layer
<month year> <doc.: IEEE doc> March 2011
Rishi Mohindra MAXIM Integrated Products
The Effect of Preamble Error Model on MAC Simulator
UWB Receiver Algorithm
OFDM System Performance
ETRI Proposal to IEEE TGn
March t Project: IEEE P Working Group for Wireless Personal Area Networks (WPANs) Submission Title: [A Simple System Kept Simple]
Wireless Mesh Networks
April 2009 doc.: IEEE /xxxxr0 March 2011
Spectral Control Issues for TGg
CCA Sensitivity Date: September 2017
Response to Comments on Optional Enhanced ACR and AACR Values
Response to Comments on Optional Enhanced ACR and AACR Values
White Space Regulatory Issues
HNS Proposal for n Physical Layer
Month Year doc.: IEEE y18/r0 March 2018
Month Year doc.: IEEE y18/r0 March 2018
Presentation transcript:

IEEE802.11a 指導教授 : 高永安 學生 : 陳穎俊

PLCP preamble

PLCP data modulation and modulation rate change PLCP preamble 作傳輸時是 採用 OFDM modulated fixed waveform The IEEE802.11SIGNAL field,BPSK-OFDM modulated at 6 Mbit/s,shall indicate the modulation and coding rate that shall be used to transmit the MPDU The transmitter(receiver)shall initiate the modulation (demodulation) constellation and the coding rate according to the RATE indicated in the SIGNAL field. The MPDU transmission rate shall be set by the DATARATE parameter in the TXVECTOR

PMD operating specifications (general) Outline description Operating frequency range Channelization TX RF delay Slot time Transmit and receive antenna port impedance Transmit and receive operating temperature range

Block diagram of the transmitter and receiver for the OFDM PHY

Operating frequency range The OFDM PHY shall operate in the 5GHz band,as allocated by a regulatory body in its operational region. Spectrum allocation in the 5 GHz band is subject to authorities responsible for geographic-specific regulatory domains(e.g.,global,regional,and national).

Channelization The set of valid operating channel numbers by regulatory domain

channelization

Channelization

TX RF delay Slot time The TX RF delay time shall be defined as the time between the issuance of a PMD.DATA.request to the PMD and the start of the corresponding symbol at the air interface The slot time for the OFDM PHY shall be 9us, which is the sum of the RX-to-TX turnaround time, MAC processing delay,and CCAdetect time(<4us) The propagation delay shall be regarded as being included in the CCA detect time

Transmit and receive antenna port impedance Transmit and receive operating temperature range The transmit and receiver antenna port(s) impedance shall be 50 maga if the port is exposed. Type 1 defined as 0 度 C 到 40 度 C Type 1 defined as -20 度 C 到 50 度 C Type 1 defined as -30 度 C 到 70 度 C

PMD transmit specificatons Transmit power levels Transmit spectrum mask Transmit spurious Transmit center frequency tolerance Modulation accuracy Transmit modulation accuracy test

Transmit power levels The maximun allowable output power according to FCC regulation

Transmit specturm mask

Transmission spurious Transmit center and Symbol clock frequency tolerance Spurious transmissions from compliant devices shall conform to national regulations The transmission center (symbol clock) frequency tolerance shall be 20% ppm maximun. The transmission center and the symbol clock frequency shall be derived from the same reference.

Modulation accuracy Transmitter spectral flatness The average energy of the constellations in each of the spectral lines – and will deviate no more than +- 2dB from their average energy. Transmitter constellation error The relative constellation RMS error,average over subcarriers, OFDM frames, and pacjets, shall not exeed a data-rate depend- ent value

Transmitter constellation error

PMD receiver specificatons Receiver minimum input level sensitivity Adjacent channel rejection Non-adjacent channel rejection Receiver maximun input level CCA sensitivity

Receviver minimum input level sensitivity The packet error rate shall be less than 10% at a PSDU length of 1000 bytes for rate-dependent input levels shall be the numbers listed in Table 91 or less The minimum input levels are measured at the antenna connector(NF of 10 dB and 5 dB implementation margi- ns are assumed)

Adjacent (Non-adjacent)channel rejection The adjacent (non- adjacent) channel rejection shall be measured by setting the desires signal ’ s strength 3 dB above the rate-dependent sensitivity specified in Table 91 and raising the power of the interfering signal until 10% PER is caused for a PSDU length of 1000 bytes. The power difference between the interfering and the desired channel is the corresponding adjacent (non- adjacent) channel rejection.

Receiver maximun input level The receiver shall provide a maximum PER(packet error rate) of 10% at a PSDU length of 1000 bytes, for a maximum input level of – 30dB measured at the antenna for any baseband modulation