Full-rate full-diversity three-time-slot space-time block code with single-symbol ML decoding

Van-Bien Pham, Weixing Sheng, X. Tran, T. Dinh
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引用次数: 1

Abstract

It is known that LTE systems do not fully support the Alamouti space-time code as the number of symbols per slot is not always an even number. Adapting to the case there is only three symbols per slot, Lei et al. proposed a class of quasi-orthogonal space time block codes (Q-STBC) for two transmit antennas and three time slots. This Q-STBC achieves some desirable properties of an STBC code such as full rate and full diversity. However, there are two drawbacks associated with it, namely, high decoding complexity due to pair-symbol maximum likelihood decoding and lack of maximum coding gain. Coping with these two issues we propose a class of STBC for three time slots and two transmit antennas with single-symbol maximum likelihood decoding. The proposed STBC also allows to achieve full-rate and full diversity. However, it is superior to Q-STBC in providing maximum coding gain while requiring lower decoding complexity.
全速率全分集三时隙时空块码与单符号ML解码
众所周知,LTE系统并不完全支持Alamouti空时码,因为每个时隙的符号数并不总是偶数。针对每个时隙只有三个符号的情况,Lei等人提出了一类针对两个发射天线和三个时隙的准正交空时分组码(Q-STBC)。该Q-STBC实现了STBC码的一些理想特性,如全速率和全分集。然而,它有两个缺点,即由于对符号的最大似然解码而导致的解码复杂性高,并且缺乏最大编码增益。针对这两个问题,我们提出了一类三时隙双发射天线单符号最大似然解码的STBC。拟议的STBC还允许实现全速率和全分集。但是,它在提供最大编码增益的同时要求更低的解码复杂度方面优于Q-STBC。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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