School of Electronic Engineering, Soongsil University, Seoul 06978, Korea.
Department of Wireless Communications Engineering, Kwangwoon University, Seoul 01897, Korea.
Sensors (Basel). 2019 Jan 26;19(3):517. doi: 10.3390/s19030517.
Ambient backscatter communication (AmBC) is considered as a promising future emerging technology. Several works on AmBC have been proposed thanks to its convenience and low cost property. This paper focuses on finding the optimal energy detector at the receiver side and estimating the corresponding bit error rate for the communication system utilizing the AmBC. Through theoretical and numerical analyses, we present two important results. First, we improve the existing energy detector by calculating the optimal averaging power orders. Second, we take advantage of the early work on orthogonal frequency division multiplexing (OFDM), where the repeating structure of ambient OFDM signals is exploited to cancel out the direct-link interference by using a cyclic prefix, then provide a test statistic in which optimal detection threshold and optimal power order are derived accordingly. The study reveals the inherent limitation of AmBC energy detectors and provides a guidance for achieving optimal power order for a given significance level.
环境背向散射通信(AmBC)被认为是一种很有前途的新兴技术。由于其便利性和低成本特性,已经提出了一些关于 AmBC 的工作。本文的重点是在利用 AmBC 的通信系统中,在接收端找到最优的能量检测器并估计相应的误比特率。通过理论和数值分析,我们提出了两个重要结果。首先,我们通过计算最优平均功率阶来改进现有的能量检测器。其次,我们利用正交频分复用(OFDM)的早期工作,利用环境 OFDM 信号的重复结构,通过循环前缀来消除直接链路干扰,然后提供一个测试统计量,从中推导出最优检测阈值和最优功率阶。该研究揭示了 AmBC 能量检测器的固有局限性,并为在给定显著水平下实现最优功率阶提供了指导。