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Frequency-Hopping/M -ary Frequency-Shift Keying for Wireless Sensor Networks: Noncoherent Detection and Performance

机译:无线传感器网络的跳频/ m-L频移键控:非相干检测和性能

摘要

In this paper, a novel WSN framework, namely the FH/MFSK WSN, is proposed, which monitors M -ary events and conveys signals from local sensors to fusion center with the aid of frequency-hopping (FH) and M -ary frequency-shift keying (MFSK) techniques. The source events under observation by local sensors are assumed to have M states. The estimates of local sensors are transmitted to the fusion center using MFSK modulation aided by FH. Channels from local sensors to fusion center are modelled either as additive white Gaussian noise (AWGN) channels or as Rayleigh fading channels. At the fusion center, signals are noncoherently detected based on square-law principles aided by equal gain combining (EGC). In this paper, the detection performance of the FH/MFSK WSN is investigated by simulation approaches. Our studies show that the FH/MFSK constitutes one of the promising schemes for efficient information delivery in WSNs. Reliable detection can be achieved at reasonable SNR levels for detection at local sensors and at fusion center.
机译:本文提出了一种新颖的WSN框架,即FH / MFSK WSN,该框架可以监视Mary事件,并借助跳频(FH)和Maryfrequency-F将信号从本地传感器传输到融合中心移位键控(MFSK)技术。假定由本地传感器观察到的源事件具有M个状态。本地传感器的估计值通过FH的MFSK调制传输到融合中心。从本地传感器到融合中心的信道被建模为加性高斯白噪声(AWGN)信道或瑞利衰落信道。在融合中心,基于平方律原理并借助等增益合并(EGC)来非相干地检测信号。本文通过仿真方法研究了FH / MFSK WSN的检测性能。我们的研究表明,FH / MFSK构成了无线传感器网络中有效信息传递的有希望的方案之一。可以在合理的SNR级别实现可靠的检测,以便在本地传感器和融合中心进行检测。

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