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Decentralized Hypothesis Testing in Energy Harvesting Wireless Sensor Networks

机译:能量收集无线传感器网络中的分散假设测试

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We consider the problem of decentralized hypothesis testing in a network of energy harvesting sensors, where sensors make noisy observations of a phenomenon and send quantized information about the phenomenon towards a fusion center. The fusion center makes a decision about the present hypothesis using the aggregate received data during a time interval. We explicitly consider a scenario under which the messages are sent through parallel access channels towards the fusion center. To avoid limited lifetime issues, we assume each sensor is capable of harvesting all the energy it needs for the communication from the environment. Each sensor has an energy buffer (battery) to save its harvested energy for use in other time intervals. Our key contribution is to formulate the problem of decentralized detection in a sensor network with energy harvesting devices. Our analysis is based on a queuing-theoretic model for the battery and we propose a sensor decision design method by considering long-term energy management at the sensors. We show how the performance of the system changes for different battery capacities. We then numerically show how our findings can be used in the design of sensor networks with energy harvesting sensors.
机译:我们考虑了能量收集传感器网络中的分散假设检验问题,其中传感器对现象进行嘈杂的观察,并将有关现象的量化信息发送到融合中心。融合中心使用一个时间间隔内的合计接收数据对当前假设做出决定。我们明确考虑了一种情况,在这种情况下,消息是通过并行访问通道发送到融合中心的。为了避免有限的生命周期问题,我们假设每个传感器都能够从环境中收集通信所需的所有能量。每个传感器都有一个能量缓冲器(电池)以保存其收集的能量,以用于其他时间间隔。我们的主要贡献是解决带有能量收集装置的传感器网络中分散检测的问题。我们的分析基于电池的排队理论模型,我们通过考虑传感器的长期能量管理,提出了一种传感器决策设计方法。我们展示了不同电池容量时系统的性能如何变化。然后,我们以数字方式显示我们的发现如何用于带有能量收集传感器的传感器网络的设计。

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