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Modified Orthogonal Space–Time Block Codes for Time-Selective Fading Channels

机译:用于时间选择衰落信道的修改的正交空时分组码

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摘要

We consider orthogonal space-time block codes (O-STBCs) in time-selective fading channels and propose a modified O-STBC (MO-STBC), which is less subject to the performance degradation caused by symbol-by-symbol channel variation. It is shown both analytically and through computer simulations that MO-STBCs effectively reduce the loss of orthogonality affecting O-STBCs in the symbol-by-symbol time-selective channel. MO-STBCs are systematically constructible for any number of antennas and have the same decoding complexity of conventional O-STBCs. The bit-error-rate (BER) performance of MO-STBCs over time-selective fading channels of generalized statistics, with gray-code-mapped M-ary phase-shift-keying (PSK) modulation and quadratic-amplitude modulation (QAM), is analytically derived. Moreover, MO-STBCs can also easily be combined with existing linear O-STBC decoders specifically designed for the time-selective channel, yielding significant performance improvement over conventionally constructed and decoded O-STBCs.
机译:我们考虑在时间选择衰落信道中使用正交空时分组码(O-STBC),并提出一种经过改进的O-STBC(MO-STBC),该算法较少受到逐个符号信道变化引起的性能下降的影响。通过分析和通过计算机仿真均显示,MO-STBC有效减少了逐符号时间选择信道中影响O-STBC的正交性损失。 MO-STBC可以系统地构建用于任意数量的天线,并且具有与传统O-STBC相同的解码复杂度。 MO-STBC在具有灰色代码映射的M元相移键控(PSK)调制和二次振幅调制(QAM)的广义统计量的时间选择衰落信道上的误码率(BER)性能由分析得出。此外,MO-STBC还可以轻松地与专门为时间选择信道设计的现有线性O-STBC解码器组合,与传统构造和解码的O-STBC相比,性能得到了显着改善。

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