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Low-Complexity ML Detection for Spatial Modulation MIMO With APSK Constellation

机译:具有APSK星座图的空间调制MIMO的低复杂度ML检测

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摘要

Spatial modulation (SM) is a promising multiple-input–multiple-output (MIMO) transmission technology, which exploits the indexes of the transmit antennas for encoding information into the spatial dimension and, thus, for increasing the transmission rate. Optimal demodulation is realized by using a maximum-likelihood (ML) detector, which jointly estimates the information bits encoded into the transmit antenna indexes and into the transmitted symbol. If a large number of transmit antennas and/or a large modulation size are used; however, the computational complexity of ML demodulation may not be affordable for some applications. Against this background, we propose two novel near-ML but low-complexity detection schemes for SM-MIMO systems, which use -ary amplitude and phase-shift keying (APSK) digital modulation. The proposed algorithms exploit specific features of the -ary APSK constellation diagram, in order to avoid searching among all constellation points. It is shown, in particular, that the complexity of the proposed detection schemes is independent of the constellation size and that it only depends on the number of rings that constitute the APSK constellation. Simulation results are also provided, which confirm that the proposed detection schemes provide bit error probability performance close to that of ML demodulation but with lower demodulation complexity.
机译:空间调制(SM)是一种很有前途的多输入多输出(MIMO)传输技术,该技术利用发射天线的索引将信息编码到空间维度,从而提高传输速率。最佳解调是通过使用最大似然(ML)检测器实现的,该检测器共同估算编码到发射天线索引和发射符号中的信息比特。如果使用大量的发射天线和/或较大的调制大小;但是,ML解调的计算复杂性对于某些应用程序可能无法承受。在此背景下,我们为SM-MIMO系统提出了两种新颖的近ML但低复杂度检测方案,它们使用-ary幅度和相移键控(APSK)数字调制。所提出的算法利用了-ary APSK星座图的特定功能,以避免在所有星座点之间进行搜索。特别地,示出了所提出的检测方案的复杂度与星座图大小无关,并且其仅取决于构成APSK星座图的环的数量。还提供了仿真结果,证实了所提出的检测方案提供的误码概率性能接近ML解调,但解调复杂度较低。

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