cooperative communication in wireless networks

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Cooperative Communication in Wireless Networks Aria Nosratinia, University of Texas, Dallas, Todd E. Hunter, Nortel Networks Ahmadreza Hedayat, University of Texas, Dallas Speaker Ching- Chung Lin IEEE Communications Magazine October 2004

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Cooperative Communication in Wireless Networks. Aria Nosratinia, University of Texas, Dallas, Todd E. Hunter, Nortel Networks Ahmadreza Hedayat, University of Texas, Dallas. IEEE Communications Magazine October 2004. Speaker : Ching-Chung Lin. Outline. Introduction Assumption - PowerPoint PPT Presentation

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Page 1: Cooperative Communication in Wireless Networks

Cooperative Communication inWireless Networks

Aria Nosratinia, University of Texas, Dallas, Todd E. Hunter, Nortel NetworksAhmadreza Hedayat, University of Texas, Dallas

Speaker : Ching-Chung Lin

IEEE Communications Magazine October 2004

Page 2: Cooperative Communication in Wireless Networks

Outline

Introduction Assumption Cooperative Communication Performance Conclusion

Page 3: Cooperative Communication in Wireless Networks

Introduction

The mobile wireless channel suffers from fading signal attenuation can vary significantly

Transmitting independent copies of the signal from different location generates spatial diversity effectively combat fading

Page 4: Cooperative Communication in Wireless Networks

A

B C

Page 5: Cooperative Communication in Wireless Networks

Assumption

One antenna Each host have one partner

may be assigned mutually by the base station Each host is a both a user and a relay One cooperator forward “overheard” information

Page 6: Cooperative Communication in Wireless Networks

Cooperative Communication

Amplify and forward Decode and forward Coded cooperation

Page 7: Cooperative Communication in Wireless Networks

Cooperative Communication

Amplify and forward Decode and forward Coded cooperation

Page 8: Cooperative Communication in Wireless Networks

Amplify and forward

Assumption Each user receives a noisy version of the signal transmitted by

its partner The base station knows the interuser channel coefficients to do

optimal decoding

Page 9: Cooperative Communication in Wireless Networks

A

B C

User

relay

destination

Page 10: Cooperative Communication in Wireless Networks

Cooperative Communication

Amplify and forward Decode and forward Coded cooperation

Page 11: Cooperative Communication in Wireless Networks

Decode and forward

Assumption each user

transmits its own bits detects the other user’s second bit

Page 12: Cooperative Communication in Wireless Networks

Decode and forward

symbol definition each user has its own spreading code

C1(t) C2(t) two user’s data bits

Signal amplitudes

i : transmission interval

j : power level

ex :

)(1nb )(

2nb

j ia

2 1a 1 2a

Page 13: Cooperative Communication in Wireless Networks

Decode and forward

)]()( , )( , )([)( 2)2(

2141)2(

1131)2(

1121)1(

1111 tcbatcbatcbatcbatX

)]()( , )( , )([)( 2)2(

2241)2(

1232)2(

2222)1(

2212 tcbatcbatcbatcbatX

Page 14: Cooperative Communication in Wireless Networks

Decode and forward

)]()( , )( , )([)( 2)2(

2141)2(

1131)2(

1121)1(

1111 tcbatcbatcbatcbatX

)]()( , )( , )([)( 2)2(

2241)2(

1232)2(

2222)1(

2212 tcbatcbatcbatcbatX

Page 15: Cooperative Communication in Wireless Networks

Decode and forward

)]()( , )( , )([)( 2)2(

2141)2(

1131)2(

1121)1(

1111 tcbatcbatcbatcbatX

)]()( , )( , )([)( 2)2(

2241)2(

1232)2(

2222)1(

2212 tcbatcbatcbatcbatX

Page 16: Cooperative Communication in Wireless Networks

Decode and forward

J. N. Laneman, G. W. Wornell, and D. N. C. Tse,

“An Efficient Protocol for Realizing Cooperative Diversity in Wireless Networks,”

Proc. IEEE ISIT, Washington, DC,June 2001 When the SNR is high , user enter into cooperative mode. When the SNR is low , user enter into noncooperative mode.

Page 17: Cooperative Communication in Wireless Networks

Cooperative Communication

Amplify and forward Decode and forward Coded cooperation

Page 18: Cooperative Communication in Wireless Networks

Coded cooperation

each user decode the transmission of its partner data is encoded into a codeword

N bits = N1 + N2

Page 19: Cooperative Communication in Wireless Networks

A

B C

N1 bits : userA’s data

Frame1

N2 bits : userA’s data

Frame2

N1 bits : userB’s data

Frame1

N2 bits : userB’s data

Frame2

Page 20: Cooperative Communication in Wireless Networks

A

B C

N1 bits : userA’s data

Frame1

N1 bits : userB’s data

Frame1

Page 21: Cooperative Communication in Wireless Networks

Performance

rate-compatible punctured convolutional (RCPC) codes

Page 22: Cooperative Communication in Wireless Networks

User 1

User 2

destination

SNR=X

SNR=X

SNR=X

Page 23: Cooperative Communication in Wireless Networks

Performance

Page 24: Cooperative Communication in Wireless Networks

User 1

User 2

destination

SNR=X+10

SNR=X

SNR=X

Page 25: Cooperative Communication in Wireless Networks

Performance

Page 26: Cooperative Communication in Wireless Networks

conclusion

Results to date are indicative of a promising future for cooperative communication.

Page 27: Cooperative Communication in Wireless Networks

Thank You

Page 28: Cooperative Communication in Wireless Networks

英 文: Block Error Rate (BKER, BLER) 台 灣: 塊誤率 大 陸: N/A 修訂時間: 2000/9/13

字組錯誤率,數據組出錯率,信息組差錯率錯誤地接收方塊 (Blocks) 的數目和送出方塊總數目的比率,來衡量塊處理效果。