Full-duplex generalized spatial modulation: A compressed sensing-based signal detection (invited paper)

B. Jung, Jeonghong Park, T. Ban, Woongsup Lee, Jong Min Kim
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Abstract

In this paper, we propose a novel low-complexity signal detection technique based on compressed sensing for a full-duplex generalized spatial modulation (FD-GSM) system, where a communication node transmits data symbols via some antennas and receives data symbols via the remaining antennas at the same time. Thus, each antenna operates as either transmitter or receiver in each symbol time, which implies FD-GSM can be implemented with half-duplex antennas. In particular, parallel orthogonal matching pursuit (POMP) algorithm is exploited as a sparse signal recovery algorithm for detecting GSM signals. The self-interference (SI) due to full-duplex operation is assumed to be completely removed by help of the recently proposed SI cancellation techniques. The proposed signal detection technique significantly outperforms the conventional OMP algorithm in terms of symbol error rate (SER). Interestingly, there exists an optimal number of active antennas for maximizing effective throughput.
全双工广义空间调制:一种基于压缩感知的信号检测方法(特邀论文)
本文针对全双工广义空间调制(FD-GSM)系统,提出一种基于压缩感知的低复杂度信号检测技术,该系统中通信节点通过部分天线发送数据符号,同时通过其余天线接收数据符号。因此,每个天线在每个符号时间内作为发射器或接收器工作,这意味着FD-GSM可以使用半双工天线实现。特别地,将并行正交匹配追踪(POMP)算法作为一种稀疏信号恢复算法用于检测GSM信号。由于全双工操作的自干扰(SI)被认为是完全消除的帮助下,最近提出的SI消除技术。所提出的信号检测技术在符号错误率(SER)方面明显优于传统的OMP算法。有趣的是,存在使有效吞吐量最大化的最优有源天线数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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