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Ambient Backscatter Systems: Exact Average Bit Error Rate Under Fading Channels

机译:环境后向散射系统:衰落信道下的精确平均误码率

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The success of Internet-of-Things (IoT) paradigm relies on, among other things, developing energy-efficient communication techniques that can enable information exchange among billions of battery-operated IoT devices. With its technological capability of simultaneous information and energy transfer, ambient backscatter is quickly emerging as an appealing solution for this communication paradigm, especially for the links with low data rate requirement. In this paper, we study signal detection and characterize exact bit error rate (BER) for the ambient backscatter system. In particular, we formulate a binary hypothesis testing problem at the receiver and analyze system performance under three detection techniques: 1) mean threshold; 2) maximum likelihood threshold (MLT); and 3) approximate MLT. Motivated by the energy-constrained nature of IoT devices, we perform the above analyzes for two receiver types: 1) the ones that can accurately track channel state information and 2) the ones that cannot. Two main features of the analysis that distinguish this paper from the prior art are the characterization of the exact conditional density functions of the average received signal energy, and the characterization of exact average BER for this setup. The key challenge lies in the handling of correlation between channel gains of two hypotheses for the derivation of joint probability distribution of magnitude squared channel gains that is needed for the BER analysis.
机译:物联网(IoT)范式的成功尤其取决于开发节能通信技术,该技术可实现数十亿电池供电的IoT设备之间的信息交换。凭借其同时进行信息和能量传输的技术能力,环境反向散射正迅速成为该通信范式的诱人解决方案,特别是对于数据速率要求较低的链路。在本文中,我们研究了信号检测并描述了环境反向散射系统的精确误码率(BER)。特别是,我们在接收机处制定了一个二元假设检验问题,并在三种检测技术下分析了系统性能:1)平均阈值; 2)最大似然阈值(MLT);和3)近似MLT。受物联网设备能量受限的影响,我们对两种接收器类型进行了上述分析:1)可以准确跟踪信道状态信息的接收器; 2)不能跟踪信道状态信息的接收器。该分析使本文有别于现有技术的两个主要特征是平均接收信号能量的精确条件密度函数的表征,以及此设置的精确平均BER的表征。关键挑战在于如何处理两个假设的信道增益之间的相关性,以推导BER分析所需的幅度平方信道增益的联合概率分布。

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