预编码的MDC-STBC方案,具有半符号可解码的接收器

H Zhao, Fanggang Wang, Jinghua Kuang, Wenbo Wang, Bin Wu
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引用次数: 1

摘要

众所周知,正交设计空时分组码(O-STBC)是线性最大似然可解码的。然而,除了两个发射天线外,没有全速率复杂的O-STBC设计。近年来,对一类最小译码复杂度的stbc (MDC-STBC)进行了研究:(1)它们具有比O-STBC更高的译码率;(2)它们是单符号可解码的(SSD);(3)它们可以通过星座旋转(CR)充分利用多样性。在本文中,我们采用预编码技术对这些mdc - stbc实现:更高的速率,全分集,最大的编码增益和半符号可解码(HSD),其中HSD比SSD具有更低的复杂性。对带有4个发射天线的mdc - stbc的仿真结果表明,采用HSD解码器的预编码器方案与采用CR的方案相比,只需要牺牲3比特的量化预编码器反馈信息,即可获得相同的分集增益和额外的1dB编码增益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Precoded MDC-STBC scheme with half-symbol decodable receiver
It is well known that Space-Time Block Codes from orthogonal designs (O-STBC) are linearly Maximum-Likelihood (ML) decodable. However there are not full rate complex O-STBC designs except for two transmit-antennas. Recently, one class of minimum-decoding-complexity STBCs (MDC-STBC) have been studied: (1) they have higher rate than O-STBC; (2) they are single-symbol decodable (SSD) and (3) they can exploit full diversity by constellation rotation (CR). In this paper, we employ precoding technology for these MDC-STBCs to realize: higher-rate, full-diversity, maximum coding gain and half-symbol decodable (HSD), where HSD has the lower complexity than SSD. Simulation results for MDC-STBCs with 4 transmit antennas show that the proposed precoder scheme with HSD decoder can get the same diversity gain and an extra 1dB coding gain than the schemes with CR, only at the cost of 3 bits feedback information for quantifying the precoder.
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