Parallelized Simulated Annealing for Model Updating in Ad-Hoc Wireless Sensing Networks

A. Zimmerman, J. Lynch
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引用次数: 6

Abstract

The engineering community has recently begun to adopt wireless sensing technologies for use in many sensing applications. These low-cost sensors provide an optimal setting for dense sensing networks, and can make large amounts of sensor data available. Also, the computational power embedded within each sensing node allows a wireless network to interrogate data within the network and in real-time. In a monitoring situation, these capabilities can be leveraged to detect and locate changes in system properties that could be an early indication of malfunction within a complex physical system. In this paper, a distributed model updating technique is embedded within the computational core of a wireless sensing network. Using a novel distributed implementation of the simulated annealing method, an ad-hoc network of wireless sensing units can determine updated system properties by iteratively matching data derived from an analytical model of the system with collected sensor data. By comparing updated system properties with those obtained in a baseline state, a wireless sensing network can detect and locate changes in the system. Experimental verification of this technique is provided on a network of wireless sensor prototypes using simulated results from a Navy ship-board chilled water system monitored with a wireless sensor network.
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Ad-Hoc无线传感网络模型更新的并行模拟退火
工程界最近开始采用无线传感技术用于许多传感应用。这些低成本传感器为密集传感网络提供了最佳设置,并可以提供大量传感器数据。此外,每个传感节点内嵌入的计算能力允许无线网络在网络内实时查询数据。在监视情况下,可以利用这些功能来检测和定位系统属性中的变化,这些变化可能是复杂物理系统中故障的早期指示。本文将分布式模型更新技术嵌入到无线传感网络的计算核心中。利用模拟退火方法的一种新颖的分布式实现,无线传感单元的自组织网络可以通过迭代匹配从系统分析模型中获得的数据与收集的传感器数据来确定更新的系统属性。通过将更新后的系统属性与基线状态下的系统属性进行比较,无线传感网络可以检测和定位系统的变化。该技术在无线传感器原型网络上进行了实验验证,使用了由无线传感器网络监测的海军舰载冷冻水系统的模拟结果。
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