论文标题

在中Nakagami褪色渠道中,具有非正交多重访问的反向散射通信系统的性能分析

Performance Analysis of Backscatter Communication Systems with Non-orthogonal Multiple Access in Nakagami Fading Channels

论文作者

Nazar, Ahsan Waleed, Hassan, Syed Ali, Jung, Haejoon, Mahmood, Aamir, Gidlund, Mikael

论文摘要

反向散射通信(BackCom)一直在作为解决大规模部署的终身管理问题的潜在候选人,这些设备遇到了与电池相关的问题,即替换,充电和回收。这种被动传感方法允许反向散射传感器节点(BSN)通过反射载体发射极的入射信号而无需启动其传输来传输信息。对于多重多重BSN,在这项工作中充分利用了功率域非正交多访问(NOMA),这是超越5G系统中多次访问的主要候选者。最近,在中断概率和系统吞吐量的背景下,已经大量关注了NOMA AID的Backcom网络。但是,尚未研究此系统的位错误率(BER)的闭合形式表达式。在本文中,我们介绍了Noma增强的Bistatic Backcom系统的设计和分析,用于无电池智能通信范式。具体而言,我们在Bistatic Backcom系统中使用NOMA进行了不完美的连续干扰取消取消的NOMA,在Nakagami-m $ m $ m $ vading渠道中得出了两个设备的闭合形式表达式。获得的表达式用于评估最有利的系统性能所需的设备的反射系数。我们的结果还表明,与正交多访问时间域多重访问方案(OMA-TDMA)相比,Noma-Backcom获得了更好的数据吞吐量。

Backscatter communication (BackCom) has been emerging as a prospective candidate in tackling lifetime management problems for massively deployed Internet-of-Things devices, which suffer from battery-related issues, i.e., replacements, charging, and recycling. This passive sensing approach allows a backscatter sensor node (BSN) to transmit information by reflecting the incident signal from a carrier emitter without initiating its transmission. To multiplex multiple BSNs, power-domain non-orthogonal multiple access (NOMA), which is a prime candidate for multiple access in beyond 5G systems, is fully exploited in this work. Recently, considerable attention has been devoted to the NOMA-aided BackCom networks in the context of outage probabilities and system throughput. However, the closed-form expressions of bit error rate (BER) for such a system have not been studied. In this paper, we present the design and analysis of a NOMA enhanced bistatic BackCom system for a battery-less smart communication paradigm. Specifically, we derive the closed-form BER expressions for a cluster of two devices in a bistatic BackCom system employing NOMA with imperfect successive interference cancellation under Nakagami-$m$ fading channel. The obtained expressions are utilized to evaluate the reflection coefficients of devices needed for the most favorable system performance. Our results also show that NOMA-BackCom achieves better data throughput compared to the orthogonal multiple access-time domain multiple access schemes (OMA-TDMA).

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