DocumentCode :
2350675
Title :
Amplify-and-modulo for Gaussian two-way relay channel
Author :
Fong, Silas L. ; Ping, Li ; Sung, Chi Wan
Author_Institution :
Dept. of Electron. Eng., City Univ. of Hong Kong, Kowloon, China
fYear :
2012
fDate :
9-12 Sept. 2012
Firstpage :
83
Lastpage :
88
Abstract :
We consider a two-way relay channel (TWRC) in which two terminals exchange messages with the help of a relay between them. The two terminals transmit messages to the relay through the Multiple Access Channel (MAC) and the relay transmits messages to the two terminals through the Broadcast Channel (BC). We assume that the MAC and the BC do not interfere with each other, and each terminal receives signals only from the relay but not the other terminal. All the nodes are assumed to be full-duplex, which means that they can transmit and receive information at the same time. A transmission scheme for the Gaussian TWRC is said to be analog-relaying if the relay does not need any codebook for encoding. The simplest analog-relaying scheme is amplify-and-forward (AF), under which the relay amplifies the received codeword and forwards the resultant codeword to the two terminals. In this paper, we propose a new analog-relaying scheme called amplify-and-modulo (AM) based on lattice operations. AM is a slight modification of AF. Under AM, the relay first amplifies the received codeword followed by reducing the power of the amplified codeword using the modulo-lattice operation, and then forwards the resultant codeword to the two terminals. After receiving the codeword transmitted by the relay, each terminal subtracts its own information before decoding. We prove an achievable rate region for AM, and obtain a necessary and sufficient condition under which AM outperforms AF. In addition, we show by graph that AM can achieve a strictly higher equal-rate than AF and another existing analog-relaying scheme together under some scenario.
Keywords :
Gaussian channels; access protocols; amplify and forward communication; broadcast channels; encoding; Gaussian TWRC; Gaussian two-way relay channel; MAC; amplified codeword; amplify-and-forward; amplify-and-modulo; analog-relaying scheme; broadcast channel; encoding; lattice operations; modulo-lattice operation; multiple access channel; received codeword; transmission scheme; Decoding; Encoding; Lattices; Random access memory; Random variables; Relays; Zirconium;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Personal Indoor and Mobile Radio Communications (PIMRC), 2012 IEEE 23rd International Symposium on
Conference_Location :
Sydney, NSW
ISSN :
2166-9570
Print_ISBN :
978-1-4673-2566-0
Electronic_ISBN :
2166-9570
Type :
conf
DOI :
10.1109/PIMRC.2012.6362901
Filename :
6362901
Link To Document :
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