DocumentCode :
1780269
Title :
Phase precoded compute-and-forward with partial feedback
Author :
Sakzad, Amin ; Viterbo, Emanuele ; Boutros, Joseph ; Yi Hong
Author_Institution :
Dept. Elec. & Comp. Sys., Monash Univ., Clayton, VIC, Australia
fYear :
2014
fDate :
June 29 2014-July 4 2014
Firstpage :
2117
Lastpage :
2121
Abstract :
In this work, we propose phase precoding for the compute-and-forward (CoF) protocol. We derive the phase precoded computation rate and show that it is greater than the original computation rate of CoF protocol without precoder. To maximize the phase precoded computation rate, we need to `jointly´ find the optimum phase precoding matrix and the corresponding network equation coefficients. This is a mixed integer programming problem where the optimum precoders should be obtained at the transmitters and the network equation coefficients have to be computed at the relays. To solve this problem, we introduce phase precoded CoF with partial feedback. It is a quantized precoding system where the relay jointly computes both a quasi-optimal precoder from a finite codebook and the corresponding network equations. The index of the obtained phase precoder within the codebook will then be fedback to the transmitters. A “deep hole phase precoder” is presented as an example of such a scheme. We further simulate our scheme with a lattice code carved out of the Gosset lattice and show that significant coding gains can be obtained in terms of equation error performance.
Keywords :
amplify and forward communication; error statistics; integer programming; matrix algebra; phase coding; precoding; protocols; quantisation (signal); radio transmitters; relay networks (telecommunication); CoF protocol; Gosset lattice; coding gain; compute-and-forward protocol; deep hole phase precoder; equation error performance; finite codebook; lattice code; mixed integer programming problem; network equation coefficients; optimum phase precoding matrix; partial feedback; phase precoded computation rate; quantized precoding system; quasi-optimal precoder; relay; transmitter; Encoding; Noise; Optimized production technology; Vectors; Compute-and-forward; lattice codes; phase precoding;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Information Theory (ISIT), 2014 IEEE International Symposium on
Conference_Location :
Honolulu, HI
Type :
conf
DOI :
10.1109/ISIT.2014.6875207
Filename :
6875207
Link To Document :
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