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Energy-efficient detection in sensor networks

机译:传感器网络中的节能检测

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摘要

There is significant interest in battery-powered sensor networks to be used for detection in a wide variety of applications, from surveillance and security to health and environmental monitoring. Severe energy and bandwidth constraints at each sensor node demand system-level approaches to design that consider detection performance jointly with system-resource constraints. Our approach is to formulate detection problems with constraints on the expected cost arising from transmission (sensor nodes to a fusion node) and measurement (at each sensor node) to address some of the system-level costs in a sensor network. For a given resource constraint, we find that randomization over the choice of measurement and over the choice of when to transmit achieves the best performance (in a Bayesian, Neyman-Pearson, and Ali-Silvey sense). To facilitate design, we describe performance criteria in the send/no-send transmission scenario, where the joint optimization over the sensor nodes decouples into optimization at each sensor node.
机译:从监视和安全到健康和环境监视的各种应用中,用于电池检测的传感器网络引起了人们的极大兴趣。每个传感器节点的能量和带宽限制都非常严格,因此需要系统级的设计方法来同时考虑检测性能和系统资源的约束。我们的方法是制定检测问题,并限制传输(从传感器节点到融合节点)和测量(在每个传感器节点)产生的预期成本,以解决传感器网络中的某些系统级成本。对于给定的资源约束,我们发现,在测量的选择和何时传输的选择上的随机化实现了最佳性能(在贝叶斯,内曼·皮尔逊和阿里·希尔维意义上)。为了方便设计,我们在发送/不发送传输方案中描述了性能标准,在该方案中,传感器节点上的联合优化解耦为每个传感器节点上的优化。

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