Spatial Modulation With Energy Detection: Diversity Analysis and Experimental Evaluation

IF 5.3 2区 计算机科学 Q1 TELECOMMUNICATIONS IEEE Transactions on Green Communications and Networking Pub Date : 2023-09-13 DOI:10.1109/TGCN.2023.3314870
Elio Faddoul;Ghassan M. Kraidy;Constantinos Psomas;Symeon Chatzinotas;Ioannis Krikidis
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Abstract

In this paper, we present a non-coherent energy detection scheme for spatial modulation (SM) systems. In particular, the use of SM is motivated by its low-complexity implementation in comparison to multiple-input multiple-output (MIMO) systems, achieved through the activation of a single antenna during transmission. Moreover, energy detection-based communications restrict the channel state information to the magnitude of the fading gains. This consideration makes the design applicable for low-cost low-powered devices since phase estimation and its associated circuitry are avoided. We derive an energy detection metric for a multi-antenna receiver based on the maximum-likelihood (ML) criterion. By considering a biased pulse amplitude modulation, we develop an analytical framework for the SM symbol error rate at high signal-to-noise ratios. Numerical results show that the diversity order is proportional to half the number of receive antennas; this result stems from having partial receiver channel knowledge. In addition, we compare the performance of the proposed scheme with that of the coherent ML receiver and show that the SM energy detector outperforms its coherent counterpart in certain scenarios, particularly when utilizing non-negative constellations. Ultimately, we implement an SM testbed using software-defined radio devices and provide experimental error rate measurements that validate our theoretical contribution.
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带能量检测的空间调制:多样性分析与实验评估
本文针对空间调制(SM)系统提出了一种非相干能量检测方案。与多输入多输出(MIMO)系统相比,空间调制(SM)系统的实施复杂度较低,在传输过程中只需激活一根天线即可实现。此外,基于能量检测的通信将信道状态信息限制为衰减增益的大小。由于避免了相位估计及其相关电路,这种设计适用于低成本、低功率设备。我们基于最大似然(ML)准则,为多天线接收器推导出一种能量检测指标。通过考虑偏置脉冲幅度调制,我们为高信噪比条件下的 SM 符号错误率建立了一个分析框架。数值结果表明,分集阶与接收天线数量的一半成正比;这一结果源于部分接收器信道知识。此外,我们还将所提方案的性能与相干 ML 接收器的性能进行了比较,结果表明 SM 能量检测器在某些情况下的性能优于相干接收器,尤其是在使用非负星座时。最后,我们利用软件定义无线电设备实现了 SM 测试平台,并提供了实验误差率测量结果,验证了我们的理论贡献。
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来源期刊
IEEE Transactions on Green Communications and Networking
IEEE Transactions on Green Communications and Networking Computer Science-Computer Networks and Communications
CiteScore
9.30
自引率
6.20%
发文量
181
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