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Transceiver energy consumption models for the design of low power wireless sensor networks

机译:用于低功耗无线传感器网络设计的收发器能耗模型

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It is generally desired to have a wireless sensor network (WSN) that will run on little power (if possible, none at all) thereby saving cost, and the inconveniences of having to replace batteries in some difficult to access areas of usage. Despite several researches on WSN energy consumption, there is no clear transceiver energy consumption model to use when designing very low power WSN. By studying the energy consumption map of the transceiver of a WSN node in different states and within state transitions, we propose in this paper the energy consumption model of the transceiver unit of a typical sensor node. The contribution of this paper is an innovative energy consumption model based on finite automata which reveals the relationship between the aggregate energy consumption and power characteristics of the transceiver components.
机译:通常期望具有无线传感器网络(WSN),该无线传感器网络将以很少的功率(如果可能,根本没有功率)运行,从而节省成本,以及在某些难以接近的使用区域中不得不更换电池的不便。尽管对WSN能耗进行了多项研究,但在设计超低功耗WSN时仍没有明确的收发器能耗模型。通过研究WSN节点在不同状态和状态转换内的收发器的能耗图,我们在本文中提出了典型传感器节点的收发器单元的能耗模型。本文的贡献是基于有限自动机的创新能耗模型,该模型揭示了收发器组件的总能耗与功率特性之间的关系。

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