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Pre-equalization for MIMO Wireless Systems Using Spatial Modulation

机译:使用空间调制的MIMO无线系统预均衡

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Spatial modulation (SM) has emerged as a very promising method to exploit the potential multiple-input multiple-output system gains using low-complexity transceivers. SM uses the antenna index at the transmitter as an additional source of information. Although SM avoids inter-channel interference, its performance tends to decrease when the number of constellation points per antenna grows up. The main contribution of this paper is to introduce a novel pre-equalization stage for SM which allows to mitigate the fading effect of the wireless channel. Its principle is to pre-distort the points generated by SM, so that the receiver has an approximation of a M-QAM scheme, where the minimum distance between constellation's points is increased and consequently, the system's performance is improved. In order to perform the pre-equalization, a complete channel state information is assuming at the transmitter. It is shown through Monte Carlo simulations that the proposed scheme significantly enhances the performance of SM.
机译:空间调制(SM)已成为利用低复杂性收发器利用潜在多输入多输出系统增益的非常有希望的方法。 SM将发送器处的天线索引作为另一个信息来源。虽然SM避免了通道间干扰,但是当每天天线的星座点数增加时,其性能趋于减小。本文的主要贡献是为SM引入新的预均衡阶段,允许减轻无线信道的衰落效果。其原理是预先扭曲SM产生的点,使得接收器具有M-QAM方案的近似,其中星座的点之间的最小距离增加,因此,系统的性能得到改善。为了执行预均衡,在发射机处假设完整的信道状态信息。通过蒙特卡罗模拟显示,所提出的方案显着提高了SM的性能。

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