English

Distributed STBCs with Full-diversity Partial Interference Cancellation Decoding

Information Theory 2011-04-29 v2 math.IT

Abstract

Recently, Guo and Xia introduced low complexity decoders called Partial Interference Cancellation (PIC) and PIC with Successive Interference Cancellation (PIC-SIC), which include the Zero Forcing (ZF) and ZF-SIC receivers as special cases, for point-to-point MIMO channels. In this paper, we show that PIC and PIC-SIC decoders are capable of achieving the full cooperative diversity available in wireless relay networks. We give sufficient conditions for a Distributed Space-Time Block Code (DSTBC) to achieve full diversity with PIC and PIC-SIC decoders and construct a new class of DSTBCs with low complexity full-diversity PIC-SIC decoding using complex orthogonal designs. The new class of codes includes a number of known full-diversity PIC/PIC-SIC decodable Space-Time Block Codes (STBCs) constructed for point-to-point channels as special cases. The proposed DSTBCs achieve higher rates (in complex symbols per channel use) than the multigroup ML decodable DSTBCs available in the literature. Simulation results show that the proposed codes have better bit error rate performance than the best known low complexity, full-diversity DSTBCs.

Keywords

Cite

@article{arxiv.1009.3387,
  title  = {Distributed STBCs with Full-diversity Partial Interference Cancellation Decoding},
  author = {Lakshmi Prasad Natarajan and B. Sundar Rajan},
  journal= {arXiv preprint arXiv:1009.3387},
  year   = {2011}
}

Comments

10 pages, 3 figures, 1 table. Expanded the proposed class of full-diversity PIC/PIC-SIC decodable DSTBCs

R2 v1 2026-06-21T16:15:19.449Z