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A new scalable decoder for linear space-time block codes with intersymbol interference

机译:具有符号间干扰的线性时空分组码的新型可扩展解码器

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Space-time codes represent a key technology for future broadband wireless communication systems. A class of space-time block codes according to Wittneben and Kuhn (see VTC 2002 - Spring) is used which can lead to intersymbol interference (ISI) due to an optimized diversity performance. Therefore ISI compensation is an important task of the decoding process of these codes. Several known ISI compensation methods can be applied for example MMSE equalization or parallel or serial ISI cancellation. In this paper a new scalable ISI cancellation method is presented, that by using a posteriori information achieves almost the performance of the maximum likelihood decoder but with a much lower complexity. The key idea is to use estimated a posteriori probabilities to determine the order of the cancellation process. In each iteration the decoder jointly decodes a variable number of symbols, which meet a specified probability threshold. By varying the threshold, the decoder is scalable in such a way that the complexity of the decoder - and consequently the available data flow rate - can be adapted in a wide range to the requests of the transmission, to a given node complexity or a required quality of service.
机译:时空码代表了未来宽带无线通信系统的一项关键技术。使用根据Wittneben和Kuhn的一类空时分组码(请参阅VTC 2002-Spring),由于优化的分集性能,它们可能导致符号间干扰(ISI)。因此,ISI补偿是这些代码的解码过程中的重要任务。可以应用几种已知的ISI补偿方法,例如MMSE均衡或并行或串行ISI抵消。在本文中,提出了一种新的可伸缩ISI消除方法,该方法通过使用后验信息几乎可以实现最大似然解码器的性能,但复杂度要低得多。关键思想是使用估计的后验概率来确定取消过程的顺序。在每次迭代中,解码器联合解码满足指定概率阈值的可变数量的符号。通过改变阈值,解码器可以以如下方式可伸缩,使得解码器的复杂度以及相应的可用数据流率可以在很宽的范围内适应传输请求,给定的节点复杂度或所需的要求。服务质量。

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