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Device characterization and cross-layer protocol design for RF energy harvesting sensors

机译:射频能量采集传感器的设备表征和跨层协议设计

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摘要

Energy harvesting from ambient radio frequency waves has the potential for realizing long lived wireless sensor networks, by reducing their dependence on the limited and irreplaceable on-board batteries. We propose two cross-layer approaches, called device-agnostic (DA) and device-specific (DS) protocols, for such networks composed of energy harvesting boards connected to off-the-shelf available sensors. These protocols determine the routing paths and the harvesting-transmission duty cycle at each hop under different conditions. The DA scheme relies purely on the local measurements on the harvesting capability of a node after the sensors are deployed, and is useful for single-flow networks. The DS scheme provides a joint hardware-software optimization by allowing the selection of the energy storing capacitor, apart from the route and duty cycle determination. Both schemes rely on a rich set of device-level experimental studies that help provide exact performance characteristics in practical scenarios, and results reveal significant performance improvement over other existing schemes.
机译:通过减少周围环境对有限和不可替代的车载电池的依赖性,从周围的射频波中收集能量具有实现寿命长的无线传感器网络的潜力。对于这种由连接到现成可用传感器的能量采集板组成的网络,我们提出了两种跨层方法,称为设备无关(DA)和设备特定(DS)协议。这些协议确定了在不同条件下每个跃点的路由路径和收获-传输占空比。 DA方案完全依赖于部署传感器之后节点的采集能力的本地测量,并且对于单流网络很有用。通过确定路径和占空比,DS方案允许选择储能电容器,从而提供了联合的软硬件优化。两种方案都依赖于一组丰富的设备级实验研究,这些研究有助于在实际情况下提供准确的性能特征,并且结果表明与其他现有方案相比,性能得到了显着改善。

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