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Implementation of a Near-Optimal Detector for Spatial Modulation MIMO Systems

机译:空间调制MIMO系统的近最佳检测器的实现

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This brief presents a hardware implementation of a detector for spatial modulation multiple-input multiple-output (SM-MIMO) communication systems. The proposed detector employs the signal-vector-based list detection method, but the original method is modified to realize a low-complexity implementation. In addition, the proposed detector is designed based on the dual-data-path architecture, in which antenna selection and symbol detection are separately performed with different precision levels to reduce the hardware complexity while achieving a near-optimal error-rate performance. The proposed detector is implemented with 87.4-K logic gates in a 0.18-μm CMOS technology, and its throughput is 858 Mb/s for 8 × 4 64 quadrature amplitude modulation SM-MIMO systems, where the operating frequency is 286 MHz, and the power consumption is 121.3 mW. This manifests that the proposed detector is very efficient with respect to the gate count as well as the energy consumption.
机译:本简介介绍了用于空间调制多输入多输出(SM-MIMO)通信系统的检测器的硬件实现。提出的检测器采用基于信号向量的列表检测方法,但是对原始方法进行了修改以实现低复杂度的实现。另外,提出的检测器是基于双数据路径架构设计的,其中天线选择和符号检测分别以不同的精度级别执行,以降低硬件复杂性,同时实现接近最佳的误码率性能。拟议中的检测器采用0.18-μmCMOS技术中的87.4-K逻辑门实现,对于8×4 64正交调幅SM-MIMO系统,其吞吐率为858 Mb / s,其中工作频率为286 MHz,并且功耗为121.3 mW。这表明,提出的检测器在门数和能量消耗方面非常有效。

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