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No-Zero-Entry Space-Time Block Codes Over Time-Selective Fading Channels for MIMO Systems

机译:MIMO系统的时间选择衰落信道上的零输入空时分组码

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In MIMO systems, space-time block code (STBC) is good solution for improving system performance. Among the STBCs, coordinate interleaved orthogonal designs (CIODs) combined with QR-decomposition-based decision-feedback decoding (QR-DDF) allow achieving good performance for time-selective fading channels. However, half of entries in codeword matrix of CIODs are zeros. These zero entries result in high peak-to-average power ratio (PAPR) and also impose a severe constraint on hardware implementation of the code when turning off some of the transmitting antennas whenever a zero is transmitted. In this paper, we propose a new design of space-time block codes without zero entry in codeword matrix (NZE-STBCs) for time-selective fading channels. The main advantage of the proposed NZE-STBCs is that its peak-to-average ratio (PAPR) is 3 dB lower than that of CIODs, and its hardware implementation is also easier due to eliminating on-off switchers without sacrificing performance. Moreover, similar as CIODs, the proposed NZE-STBCs can use low complexity QR-DDF decoder over time-selective fading channels to enhance performance and reduce decoding complexity. Simulation results show that the proposed NZE-STBCs outperform CIODs for three transmit antennas while performing the same for two and four transmit antennas.
机译:在MIMO系统中,空时分组码(STBC)是提高系统性能的良好解决方案。在STBC中,坐标交织正交设计(CIOD)与基于QR分解的决策反馈解码(QR-DDF)相结合,可以实现对时间选择衰落信道的良好性能。但是,CIOD的代码字矩阵中的一半条目为零。这些零条目会导致较高的峰均功率比(PAPR),并且在每当发送零时关闭一些发送天线时,也会对代码的硬件实现施加严格的约束。在本文中,我们为时选择衰落信道提出了一种新的时空分组码设计,该码元矩阵在码字矩阵(NZE-STBC)中不为零。提议的NZE-STBC的主要优点是其峰均比(PAPR)比CIOD的峰均比低3 dB,并且由于在不牺牲性能的情况下消除了开/关切换器,因此其硬件实现也更加容易。此外,类似于CIOD,建议的NZE-STBC可以在时间选择衰落信道上使用低复杂度QR-DDF解码器,以增强性能并降低解码复杂度。仿真结果表明,所提出的NZE-STBC在三个发射天线上的表现优于CIOD,而在两个和四个发射天线上的表现都优于CIOD。

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