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Noncoherent unitary space-time codes: Constellation design and decoding algorithm

机译:非相干unit时空码:星座设计和解码算法

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摘要

Two novel schemes of unitary space-time constellations generation based on zero vectors adding are proposed for the multiple-antenna communication system. In the first scheme, T zero row vectors are added into conventional unitary matrices directly, and the number of new unitary matrices obtained by different positions of the added zero vectors in T symbol duration is ⌊T / T⌋ times larger than that of conventional unitary matrices. In the second scheme, one part of the required constellations is created by the first scheme and the other part is obtained by the conventional design. This means that more information bits can be transmitted by the new constellations. According to their special construction, two corresponding decoding algorithms are proposed with low complexity in flat fading channel, respectively. At the same time, the probability of miss detection is deduced for the decoding algorithms. Performance analysis and simulation results show that the proposed constellations outperform the conventional constellations and the proposed decoding algorithms are efficient and simple.
机译:针对多天线通信系统,提出了两种基于零矢量相加的unit时空星座生成方案。在第一种方案中,将T个零行向量直接添加到常规unit矩阵中,并且在T符号持续时间内,通过相加的零向量的不同位置获得的新unit矩阵的数量是常规unit的大⌊T/T⌋倍。矩阵。在第二种方案中,所需的星座图的一部分是通过第一种方案创建的,而另一部分是通过常规设计获得的。这意味着新的星座图可以发送更多的信息比特。根据它们的特殊结构,分别提出了两种在平坦衰落信道中具有低复杂度的对应解码算法。同时,为解码算法推导了未命中检测的可能性。性能分析和仿真结果表明,所提出的星座图优于传统的星座图,并且所提出的解码算法高效且简单。

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