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Frequency-hopping/M -ary frequency-shift keying wireless sensor network monitoring multiple source events

机译:跳频/ m -ary频移键控无线传感器网络监控多源事件

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摘要

In this contribution, a novel wireless sensor network (WSN) assisted by M -ary frequency-shift keying (MFSK) modulation and frequency-hopping (FH), referred to as the FH/MFSK WSN, is proposed to monitor multiple source events (SEs). In the FH/MFSK WSN, the multiple SEs of each with multiple states are observed by a common group of local sensors (LSNs), each of which observes simultaneously all the SEs. The LSNs convey their decisions through wireless channels to the fusion center (FC) with the aid of MFSK and FH. At the FC, the SEs’ states are detected using noncoherent fusion rules. In this contribution, two noncoherent fusion rules are investigated. The first one is the equal gain combining (EGC) fusion rule, while the second one uses both the EGC and iterative interference cancellation (IIC), which is referred to as the EGC-IIC fusion rule. The detection performance of the FH/MFSK WSN employing the proposed EGC or EGC-IIC fusion rule is investigated, when assuming the wireless channels experience independent Rayleigh fading. Our studies show that the FH/MFSK WSN may constitute one of the promising WSN schemes for some special application scenarios. It is capable of monitoring simultaneously multiple SEs of each with multiple states, is low-complexity owing to using the noncoherent fusion rule and, furthermore, is capable of achieving promising detection performance, as it can make use of the diversity in both frequency and space domains
机译:在这项贡献中,提出了一种新型的无线传感器网络(WSN),该系统由M频移键控(MFSK)调制和跳频(FH)辅助,称为FH / MFSK WSN,用于监视多个源事件( SEs)。在FH / MFSK WSN中,通过一组公共的局部传感器(LSN)观察每个具有多个状态的多个SE,每个局部传感器同时观察所有SE。 LSN在MFSK和FH的帮助下,通过无线信道将其决策传达给融合中心(FC)。在FC处,使用非相干融合规​​则检测SE的状态。在此贡献中,研究了两个非相干融合规​​则。第一个是等增益合并(EGC)融合规则,而第二个同时使用EGC和迭代干扰消除(IIC),这被称为EGC-IIC融合规则。当假设无线信道经历独立的瑞利衰落时,研究采用建议的EGC或EGC-IIC融合规则的FH / MFSK WSN的检测性能。我们的研究表明,对于某些特殊应用场景,FH / MFSK WSN可能构成有希望的WSN方案之一。它能够同时监视具有多个状态的多个SE,由于使用了非相干融合规​​则而具有较低的复杂度,并且由于可以利用频率和空间的多样性,因此能够实现有希望的检测性能域

著录项

  • 作者

    Yang Fucheng; Yang Lie-Liang;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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