利用多天线多irs辅助通信系统控制无线信道:综合性能分析

IF 1.3 4区 工程技术 Q3 COMPUTER SCIENCE, INFORMATION SYSTEMS
Suresh Penchala;Shravan Kumar Bandari;V. Venkata Mani;Anastasios Drosopoulos
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引用次数: 0

摘要

为了满足社会需求,未来的通信系统必须同时管理多个任务,从而增加了电路的复杂性和错误率。这些挑战可以通过智能反射面(IRS)来缓解,利用成本效益高的可重构超材料来操纵无线传播通道。本研究利用矩产生函数(MGF)方法,研究了在广义衰落信道下多天线多irs辅助通信系统在基站(BS)和用户设备(UE)之间非视距(NLOS)场景下的性能分析。推导了该系统模型的误码率和遍历容量的理论表达式。能源效率(EE)也被评估为完整性。给出了一个平均蒙特卡罗(MC)收发器仿真试验台,对所得理论表达式进行了验证。导出的理论公式涵盖了Nakagami-m, Nakagami-q和Rayleigh通道作为角落案例,以涵盖室内和室外的实际场景。在BS和UE处有更多的天线、更多的IRS、更多的反射元件、靠近BS或UE的IRS位置、高值和低值,可以观察到性能的改善。结果表明,与单irs系统相比,三irs系统具有更好的误码率、增强的电导率和更高的能效,在误码率为105时获得8db增益,电导率提高2.82 (b/s/Hz),在平均可达率25 (b/s/Hz)时节能3.5倍。此外,采用多根天线可以在BER值为105时提高6db,提高可达速率,从而提高能源效率。最后,将IRS放置在BS或UE附近比将其设置在中间更有利,后者将误码率从102降低到109,EC为2 (b/s/Hz)增益,并且可以设计出3倍更好的节能系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Controlled Wireless Channel using Multi-Antenna Multi-IRS Assisted Communication System: A Comprehensive Performance Analysis
To address societal demands, upcoming communication systems must manage multiple tasks simultaneously, thereby increasing circuit complexity and error rates. These challenges can be mitigated with intelligent reflecting surface (IRS) by utilizing cost-effective reconfigurable metamaterials to manipulate wireless propagation channels. The study investigates the performance analysis of a multi-antenna multi-IRS assisted communication system in a generalized fading channel assuming non-line-of-sight (NLOS) scenario between the base station (BS) and the user equipment (UE) using the moment-generating function (MGF) approach. The theoretical expressions for the bit error rate (BER), and Ergodic capacity (EC) are derived for the system model under consideration. Energy efficiency (EE) was also evaluated for completeness. A mean Monte-Carlo (MC) transceiver simulation test bed is provided to validate the obtained theoretical expressions. The derived theoretical formulae cover Nakagami-m, Nakagami-q, and Rayleigh channels as corner cases to cover the practical indoor and outdoor scenarios. Improved performance is observed with more antennas at the BS and UE, more IRSs, more reflecting elements, IRS placement near BS or UE, high , and low values. It was noticed that the triple-IRS system offers better BER, enhanced EC, more energy efficient than the single-IRS system, and achieves 8 dB gain at BER point of 105, 2.82 (b/s/Hz) improvement in EC, and 3.5 times energy efficient at average achievable rate 25 (b/s/Hz). Moreover, employing multiple antennas achieves 6 dB improvement at BER value of 105, enhanced achievable rate, and in turn improves energy efficiency. Lastly, placing the IRS either near BS or UE is more beneficial than setting it at mid-way where the BER reduces from 102 to 109, EC of 2 (b/s/Hz) gain, and can design a 3 times better energy efficient system.
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来源期刊
IEEE Latin America Transactions
IEEE Latin America Transactions COMPUTER SCIENCE, INFORMATION SYSTEMS-ENGINEERING, ELECTRICAL & ELECTRONIC
CiteScore
3.50
自引率
7.70%
发文量
192
审稿时长
3-8 weeks
期刊介绍: IEEE Latin America Transactions (IEEE LATAM) is an interdisciplinary journal focused on the dissemination of original and quality research papers / review articles in Spanish and Portuguese of emerging topics in three main areas: Computing, Electric Energy and Electronics. Some of the sub-areas of the journal are, but not limited to: Automatic control, communications, instrumentation, artificial intelligence, power and industrial electronics, fault diagnosis and detection, transportation electrification, internet of things, electrical machines, circuits and systems, biomedicine and biomedical / haptic applications, secure communications, robotics, sensors and actuators, computer networks, smart grids, among others.
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