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Magneto-inductive passive relaying in arbitrarily arranged networks

机译:任意布置网络中的磁感应无源继电器

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We consider a wireless sensor network that uses inductive near-field coupling for wireless powering or communication, or for both. The severely limited range of an inductively coupled source-destination pair can be improved using resonant relay devices, which are purely passive in nature. Utilization of such magneto-inductive relays has only been studied for regular network topologies, allowing simplified assumptions on the mutual antenna couplings. In this work we present an analysis of magneto-inductive passive relaying in arbitrarily arranged networks. We find that the resulting channel has characteristics similar to multipath fading: the channel power gain is governed by a non-coherent sum of phasors, resulting in increased frequency selectivity. We propose and study two strategies to increase the channel power gain of random relay networks: i) deactivation of individual relays by open-circuit switching and ii) frequency tuning. The presented results show that both methods improve the utilization of available passive relays, leading to reliable and significant performance gains.
机译:我们考虑使用感应近场耦合进行无线供电或通信,或两者都使用的无线传感器网络。使用谐振继电器设备可以改善电感耦合源-目的地对的严格限制范围,该谐振继电器设备本质上是纯无源的。仅针对常规网络拓扑研究了这种磁感应继电器的使用,从而简化了相互天线耦合的假设。在这项工作中,我们对任意布置的网络中的磁感应无源继电器进行了分析。我们发现,所得的信道具有类似于多径衰落的特性:信道功率增益由相量的非相干总和控制,从而导致频率选择性提高。我们提出并研究了两种提高随机继电器网络的信道功率增益的策略:i)通过开路开关停用单个继电器,以及ii)频率调谐。呈现的结果表明,两种方法都可以提高可用无源继电器的利用率,从而获得可靠且显着的性能提升。

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