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A Grouped Pre-Coding Aided Spatial Modulation for MIMO Systems

机译:用于MIMO系统的分组预编码辅助空间调制

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摘要

Pre-coding aided spatial modulation (PSM) is a recently introduced concept that achieves low complexity and low cost at the receiver. However, it is only suitable for the symmetric or under-determined system due to the utilization of the linear pre-coding. In this paper, a novel PSM-based transmission strategy termed as grouped pre-coding aided spatial modulation (group PSM) is proposed for the over-determined MIMO system where the number of receive antennas is larger than the number of transmit antennas. In our group PSM scheme, the receive antennas are equally divided into several groups. A single receive antenna group is selected during each time slot and the index of the receive antenna group is used for conveying extra information bits. We design a low complexity detection method for the proposed scheme and derive the bit error rate expression. To further improve the performance of group PSM, we propose a power allocation method, where the power allocated for each receive antenna group is optimized based on maximizing the minimum Euclidean distance between received group PSM signal constellations. We also generalize our group PSM scheme in order to improve the multiplexing gain and flexibility, where a particular subset of receive antenna groups is activated so as to convey more information bits. Our simulation results validate the accuracy of the theoretical analysis and demonstrate that both the proposed group PSM and generalized group PSM schemes achieve good performance and significantly increase the scalability of PSM in practice.
机译:预编码辅助空间调制(PSM)是最近引入的概念,其在接收器中实现了低复杂度和低成本。然而,由于利用线性预编码,它仅适用于对称或未确定的系统。在本文中,提出了一种作为分组预编码辅助空间调制(组PSM)称为分组的基于PSM的传输策略,用于过度确定的MIMO系统,其中接收天线的数量大于发射天线的数量。在我们的PSM方案中,接收天线同样分为几个组。在每个时隙期间选择单个接收天线组,并且接收天线组的索引用于传送额外信息位。我们设计了所提出的方案的低复杂性检测方法,并导出误码率表达式。为了进一步提高组PSM的性能,我们提出了一种功率分配方法,其中基于最大化接收组PSM信号星座之间的最小欧几里德距离来优化针对每个接收天线组的功率的功率分配方法。我们还概括了我们的组PSM方案,以提高多路复用增益和灵活性,其中激活特定接收天线组的特定子集以便传送更多信息位。我们的仿真结果验证了理论分析的准确性,并证明了所提出的PSM和广义组PSM计划均可实现良好的性能,并在实践中显着提高PSM的可扩展性。

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