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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Optimal Non-Coherent Detector for Ambient Backscatter Communication System
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Optimal Non-Coherent Detector for Ambient Backscatter Communication System

机译:用于环境反向散射通信系统的最佳非相干探测器

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摘要

The joint probability density function (pdf) of the received signal of an ambient backscatter communication system is derived, assuming that on-off keying (OOK) is performed at the tag to form non-return to zero (NRZ) line codes, and that the ambient radio frequency (RF) signal is white Gaussian. The pdf of the received signal is then utilized to design two different types of non-coherent detectors. The first detector directly uses the received signal to perform a hypothesis test. The second detector first estimates the channel based on the observed signal and then performs the hypothesis test. Test statistics and the optimal decision threshold of the detectors are derived. The energy detector is shown to be an approximation of the second detector. For cases where the reader is able to avoid or cancel the direct interference from the RF source (e.g., through successive interference cancellation), a third detector is given as a special case of the first detector. Numerical results show that the first detector outperforms the second detector, although the second detector is computationally simpler.
机译:假设在标签上执行开关键控(OOK)以形成非返回到零(NRZ)线路代码,并且该概率将在标签上执行ON-OFF键控(OOK)的接收信号的关节概率密度函数(PDF)。环境射频(RF)信号是白色高斯。然后利用接收信号的PDF来设计两种不同类型的非相干探测器。第一检测器直接使用接收信号来执行假设测试。第二检测器首先估计基于观察到的信号的信道,然后执行假设测试。导出检测器的测试统计和最佳判定阈值。能量检测器被示出为第二检测器的近似。对于读者能够避免或取消来自RF源的直接干扰(例如,通过连续干扰消除)的情况,第三检测器作为第一检测器的特殊情况。数值结果表明,第一检测器优于第二检测器,尽管第二检测器是计算方式更简单的。

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