次优迭代时空接收机的比较

Arnaud Guéguen
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引用次数: 8

摘要

在高频谱效率下,时空分组编码(STBC)多输入多输出(MIMO)系统的最佳解码具有临界复杂性,除非空时编码结构提供简单的最佳解码,如时空正交分组编码(STOBC)。实际上,STBC的真最大似然(ML)解码或后验概率(APP)解码的复杂性随着频谱效率呈指数增长。作为一种软输入软输出(SISO)解码方案,APP时空解码特别有趣,因为它允许时空接收器有效地与信道解码器一起工作。此外,它可以与SISO信道解码器以迭代方式使用,以接近最佳的联合接收机性能。列表域解码(LSD)提供了一个很好的近似APP解码的方法,并且降低了复杂性,因此可以将其视为性能参考。本文提出了一种新的基于先验MMSE的次优SISO空时接收机,其复杂度明显低于LSD,但在迭代接收机中使用时性能与LSD相似。首先介绍了考虑中的系统,然后详细描述了新提出的基于MMSE的接收器和参考LSD接收器的简要描述。然后在迭代接收器中评估这两种方案的性能和复杂性。
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Comparison of suboptimal iterative space-time receivers
At high spectral efficiencies, optimal decoding of space time block coded (STBC) multiple input multiple output (MIMO) systems has a critical complexity unless the space-time code structure offers simple optimal decoding, as is the case for space time orthogonal block codes (STOBC). Indeed, the complexity of true maximum likelihood (ML) decoding or a posteriori probability (APP) decoding of STBC increase exponentially with the spectral efficiency. As a soft input soft output (SISO) decoding scheme, APP space-time decoding is of special interest since it allows the space-time receiver to efficiently work with a channel decoder. Besides, it can advantageously be used in an iterative manner with a SISO channel decoder to approach the optimal joint receiver performance. List sphere decoding (LSD) provides a good approximation of APP decoding with reduced complexity and can therefore be considered as a performance reference. This paper presents a new suboptimal SISO space-time receiver based on MMSE using priors, which has significantly lower complexity than LSD but turns out to perform similarly when used in an iterative receiver. The system under consideration is first presented, followed by a detailed description of the new proposed MMSE based receiver and a brief description of the reference LSD receiver. These two schemes are then evaluated in iterative receivers in terms of performance and complexity.
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