动态环境下异构传感器网络运行的预测控制器

A. Talukder, S. Ali, A. Panangadan, L. Chandramouli
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引用次数: 2

摘要

我们讨论了一种用于异构分布式传感器网络电源管理的新型控制方法。传感器网络中的许多资源管理算法需要完全了解外部环境和传感器网络系统,并且是基于规则的,无法处理快速变化的环境;这限制了它们在现实环境中的使用。我们提出了一种基于事件的资源管理问题的控制优化公式,并讨论了一种自适应改变传感器网络期望系统性能以响应事件的方法。这种功能在可用能量极其有限的现场可部署传感器网络中至关重要。这种限制不允许将连续操作作为非常昂贵的选项,并且需要将系统调整作为在面对动态外部事件时延长操作生命周期的一种手段。我们展示了合成传感器网络的结果,其中只有关于外部世界和传感系统的部分准确信息可用,并说明了控制算法在处理动态事件时的有效性,通过有效利用能源来保证最小的系统寿命。结果表明,该控制算法在传感器可靠性变化的情况下对能源的使用做出了有效的控制决策。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Predictive controller for heterogeneous sensor network operation in dynamic environments
We discuss a novel control methodology for power management in heterogeneous distributed sensor networks. Many algorithms for resource management in sensor networks require complete knowledge of the external environment and the sensor network system, are rule-based and cannot handle rapidly changing environments; this restricts their use in real-world environments. We present an event based control optimization formulation of the resource management problem and discuss a method to adaptively change desired system performance of the sensor network in response to events. This functionality is critical in field-deployable sensor networks where the available energy is extremely limited. This limitation disallows continuous operation as a very expensive option and necessitates system adaptation as a means to extend operational lifetime in the face of dynamic external events. We show results on synthetic sensor networks where only partially accurate information about the external world and the sensing system is available and illustrate the efficacy of the control algorithm in handling dynamic events with guaranteed minimum system lifespan via efficient usage of energy resources. We show that the control algorithm makes effective control decisions about the use of energy resources with varying sensor reliabilities.
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