反射表面辅助环境反向散射通信的能量探测

IF 5.3 2区 计算机科学 Q1 TELECOMMUNICATIONS IEEE Transactions on Green Communications and Networking Pub Date : 2023-10-02 DOI:10.1109/TGCN.2023.3321525
Khaled Humaid Altuwairgi;Ahmad Massud Tota Khel;Khairi Ashour Hamdi
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引用次数: 0

摘要

本文研究的是反射面(RS)辅助环境反向散射通信(AmBC)系统,其中的反射面可以是智能反射面(IRS)或哑反射面(DRS)。前者利用信道状态信息进行相移并形成射向阅读器的波束,后者则随机反射信号而不进行相移。本文旨在评估同时充当能量源和干扰源的环境源的影响,以及智能 RS 对 AmBC 系统误码率 (BER) 性能和覆盖范围的潜在好处。因此,它提出了在具有理想/非理想相移的 IRS 和 DRS 下使用简单非相干能量检测方案的开关键控调制的精确误码率表达式。数值和蒙特卡洛仿真结果表明,理想和非理想相移下的 IRS 均优于 DRS;但后者具有成本效益,适合物联网通信等低功耗应用。结果还表明,RS 能显著增强传统 AmBC 系统的有限覆盖范围。最后,研究还发现,潜在阻塞限制了高信噪比和大量反射元件情况下的误码率,这可以通过增加天线数量来改善。
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Energy Detection for Reflecting Surfaces-Aided Ambient Backscatter Communications
This paper considers a reflecting surface (RS)-aided ambient backscatter communication (AmBC) system, where the RS can be either an intelligent RS (IRS) or a dumb RS (DRS). The former uses channel state information to apply phase shifts and form beams towards the reader, while the latter randomly reflects signals without applying phase shifts. The paper aims to evaluate the effects of ambient sources that act as simultaneous energy and interference sources, as well as the potential benefits of RSs on the bit error rate (BER) performance and coverage of AmBC systems. Therefore, it presents accurate BER expressions for on-off keying modulation using a simple non-coherent energy detection scheme under an IRS with ideal/non-ideal phase shifts and a DRS. Numerical and Monte-Carlo simulation results demonstrate that an IRS under both ideal and non-ideal phase shifts outperforms a DRS; however, the latter is cost-efficient and suitable for low-power applications, such as Internet of things communications. The results also show that an RS significantly enhances the limited coverage of conventional AmBC systems. Finally, it is observed that potential blockages limit the BER in the high-signal-to-noise ratio and large number of reflecting elements regimes, which can be improved by increasing the number of antennas.
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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
期刊最新文献
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