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Class of Full-Rank Space-Time Codes Combining Orthogonal Designs With Delay Diversity

机译:正交设计与时延分集相结合的全秩空时码类

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This paper considers a new class of full-diversity space-time (ST) codes for multiple-transmit-antenna wireless systems. These codes, relying on partitioning the transmit antennas into groups, consist of a combination of delay transmit diversity with orthogonal ST block codes and specially designed symbol mappings of information bits into channel symbols. Due to the orthogonality of the ST block codes, which guarantees each antenna group composed signal to have full rank, and the blockwise delay diversity, which guarantees independence of the signals transmitted by different antenna groups at the same time, these codes achieve full diversity with relatively low decoding complexity. A computer search has been employed to determine the channel symbol mappings for codes with quaternary phase-shift keying (QPSK) and eight-phase PSK modulation that maximize the asymptotic coding advantages. For 16-phase quadrature amplitude modulation (16 QAM), we present a novel hand-designed code. These codes yield performance gains in terms of both frame error rate and bit error rate with respect to many known full-diversity codes over quasi-static and block-fading Rayleigh channels, with decoding of reasonable complexity.
机译:本文考虑了一种用于多发射天线无线系统的新型全分集时空(ST)码。这些代码依赖于将发射天线划分为组,包括延迟发射分集和正交ST块代码以及信息比特到信道符号的特殊设计符号映射的组合。由于ST分组码的正交性(保证每个天线组组成的信号具有完整秩)和逐块延迟分集(保证不同天线组同时发送的信号的独立性),这些代码实现了全分集。相对较低的解码复杂度。已经使用计算机搜索来确定具有四进制相移键控(QPSK)和八相PSK调制的代码的信道符号映射,这些符号最大化了渐近编码的优势。对于16相正交幅度调制(16 QAM),我们提出了一种新颖的手工设计代码。相对于许多已知的准静态和块衰落瑞利信道上的全分集码,这些码在帧错误率和误码率方面都产生了性能增益,并且具有合理的复杂度。

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