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Self-organization of sensor networks for detection of pervasive faults

机译:自组织传感器网络以检测普遍故障

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Resource aware operation of sensor networks requires adaptive re-organization to dynamically adapt to the operational environment. A complex dynamical system of interacting components (e.g., computer network and social network) is represented as a graph, component states as spins, and interactions as ferromagnetic couplings. Using an Ising-like model, the sensor network is shown to adaptively self-organize based on partial observation, and real-time monitoring and detection is enabled by adaptive redistribution of limited resources. The algorithm is validated on a test-bed that simulates the operations of a sensor network for detection of percolating faults (e.g. computer viruses, infectious disease, chemical weapons, and pollution) in an interacting multi-component complex system.
机译:传感器网络的资源感知型操作需要自适应重组以动态适应操作环境。相互作用的组件(例如,计算机网络和社交网络)的复杂动力学系统被表示为图形,组件状态为自旋,相互作用为铁磁耦合。使用类似Ising的模型,传感器网络显示为基于部分观察来自适应地自我组织,并且通过有限资源的自适应重新分配实现了实时监视和检测。该算法在测试台上得到了验证,该测试台可模拟传感器网络的运行,以检测相互作用的多组件复杂系统中的渗透故障(例如计算机病毒,传染病,化学武器和污染)。

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