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Low-Complexity Detection Scheme for Generalized Spatial Modulation

机译:广义空间调制的低复杂度检测方案

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摘要

Generalized spatial modulation was recently proposed, in which only part of the transmit antennas are activated to send the same complex symbol. Compared to Spatial Modulation (SM), it can offer spatial diversity. Moreover, it is no longer limited to the number of the transmit antennas. In this letter, a low complexity detection scheme is presented, which can achieve a near Maximum-Likelihood (ML) performance and reduce the complexity compared to ML. In the proposed algorithm, the antenna index is ordered first based on the Hermitian angle between the received vector y and the combined channel vector h_j. With the antenna index list, the constellation symbol can be estimated by calculating the difference between the normalized projection of received symbol in the direction of combined channel and the actual transmitted symbols. We can make a tradeoff between the performance and the complexity by changing the number of the candidate transmit antennas. The simulation results show that the proposed algorithm can achieve a near-ML performance with lower complexity.
机译:最近提出了广义空间调制,其中只有部分发射天线被激活以发送相同的复数符号。与空间调制(SM)相比,它可以提供空间多样性。而且,它不再局限于发射天线的数量。在这封信中,提出了一种低复杂度检测方案,该方案可以实现接近最大似然(ML)的性能并与ML相比降低了复杂度。在提出的算法中,首先根据接收到的向量y和组合信道向量h_j之间的厄米角对天线索引进行排序。利用天线索引列表,可以通过计算在组合信道方向上的接收符号的归一化投影与实际发射符号之间的差来估计星座符号。通过更改候选发射天线的数量,我们可以在性能和复杂度之间进行权衡。仿真结果表明,该算法能够以较低的复杂度实现接近ML的性能。

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