Symbol Error Rate of Space-Time Network Coding in Nakagami-m Fading
Abstract
In this paper, we analyze the symbol error rate (SER) of space-time network coding (STNC) in a distributed cooperative network over independent but not necessarily identically distributed (i.n.i.d.) Nakagami- fading channels. In this network, multiple sources communicate with a single destination with the assistance of multiple decode-and-forward (DF) relays. We first derive new exact closed-form expressions for the SER with -ary phase shift-keying modulation (-PSK) and -ary quadrature amplitude modulation (-QAM). We then derive new compact expressions for the asymptotic SER to offer valuable insights into the network behavior in the high signal-to-noise ratio (SNR) regime. Importantly, we demonstrate that STNC guarantees full diversity order, which is determined by the Nakagami- fading parameters of all the channels but independent of the number of sources. Based on the new expressions, we examine the impact of the number of relays, relay location, Nakagami- fading parameters, power allocation, and nonorthogonal codes on the SER.
Keywords
Cite
@article{arxiv.1207.0938,
title = {Symbol Error Rate of Space-Time Network Coding in Nakagami-m Fading},
author = {Ang Yang and Zesong Fei and Nan Yang and Chengwen Xing and Jingming Kuang},
journal= {arXiv preprint arXiv:1207.0938},
year = {2012}
}
Comments
23 pages, 9 figures