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Pseudo-random phase precoded spatial modulation and precoder index modulation

机译:伪随机相位预编码空间调制和预编码器索引调制

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Spatial modulation (SM) is a transmission scheme that uses multiple transmit antennas but only one transmit RF chain. At each time instant, only one among the transmit antennas will be active and the others remain silent. The index of the active transmit antenna will also convey information bits in addition to the information bits conveyed through modulation symbols. Pseudo-random phase precoding (PRPP) is a technique that can achieve high diversity orders even in single antenna systems without the need for channel state information at the transmitter and transmit power control. In this paper, we exploit the advantages of both SM and PRPP simultaneously. We propose a pseudo-random phase precoded SM (PRPP-SM) scheme, where both the modulation bits and the antenna index bits are precoded by pseudo-random phases. The proposed PRPP-SM system gives significant performance gains over SM system without PRPP and PRPP system without SM. Since maximum likelihood (ML) detection becomes exponentially complex in large dimensions, we propose a low complexity local search based detection (LSD) algorithm suited for PRPP-SM systems with large precoder sizes. Our simulation results show that with 4 transmit antennas, 1 receive antenna, 5 × 20 pseudo-random phase precoder matrix and BPSK modulation, the performance of PRPP-SM using ML detection is better than SM without PRPP with ML detection by about 9 dB at 10 BER. This performance advantage gets even better for large precoding sizes. We also propose a precoder index modulation (PIM) scheme, which conveys additional information bits through the choice of a precoding matrix among a set of pre-determined PRPP matrices. Finally, combining the PIM and PRPP-SM schemes, we propose a PIM-SM scheme which conveys bits through both antenna index as well as precoder index.
机译:空间调制(SM)是一种使用多个发射天线但仅一个发射RF链的传输方案。在每个时刻,发射天线中只有一个处于活动状态,而其他则保持静音。除了通过调制符号传送的信息比特之外,有源发射天线的索引还将传送信息比特。伪随机相位预编码(PRPP)是一种即使在单天线系统中也可以实现高分集阶数的技术,而无需在发射机处进行信道状态信息和发射功率控制。在本文中,我们同时利用了SM和PRPP的优势。我们提出一种伪随机相位预编码SM(PRPP-SM)方案,其中调制位和天线索引位均由伪随机相位预编码。与不带PRPP的SM系统和不带SM的PRPP系统相比,拟议的PRPP-SM系统可显着提高性能。由于最大似然(ML)检测在大尺寸上变得指数复杂,因此我们提出了一种低复杂度,基于本地搜索的检测(LSD)算法,适用于具有大预编码器大小的PRPP-SM系统。我们的仿真结果表明,在使用4个发射天线,1个接收天线,5×20伪随机相位预编码器矩阵和BPSK调制的情况下,使用ML检测的PRPP-SM的性能要好于不使用ML检测的PRPP的SM,在大约9 dB的情况下。 10 BER。对于较大的预编码大小,此性能优势将变得更好。我们还提出了一种预编码器索引调制(PIM)方案,该方案通过在一组预定的PRPP矩阵中选择预编码矩阵来传达其他信息位。最后,结合PIM和PRPP-SM方案,我们提出了一种PIM-SM方案,该方案既通过天线索引又通过预编码器索引传送比特。

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