无线传感器网络中状态驱动的能量优化

R. Jurdak, P. Baldi, C. Lopes
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引用次数: 10

摘要

大多数传感器网络应用需要在全网范围内保证服务质量,这表明需要全局网络成本优化。传感器网络中单个节点的动态和不均匀局部状态使全局成本优化变得复杂。在这里,我们提出了一种通过每个节点的贪婪局部决策来优化传感器网络全局成本的方法,并探讨了这种方法在减少单个节点的空闲侦听以降低全局网络能源成本方面的好处。我们考虑了本地传感器节点状态的两种表示方式:(1)路由树中的后代数量;(2)后代数量和占空比。对于这两种状态表示,我们通过运行ALPL的14个mica2传感器节点的测试平台上的实验表明,使节点能够根据其本地状态设置侦听模式,从而减少了35%的全局能源成本,并且比BMAC提供了更平衡的能源消耗。
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State-driven energy optimization in wireless sensor networks
Most sensor network applications require quality of service guarantees on a network-wide basis, suggesting the need for global network cost optimization. The dynamic and nonuniform local states of individual nodes in sensor networks complicate global cost optimization. Here, we present an approach for optimizing global cost in sensor networks through greedy local decisions at each node, and we explore the benefits of this approach in reducing the idle listening at individual nodes in order to reduce the global network energy cost. We consider two representations for the local sensor node state: (1) number of descendants in the routing tree: and (2) number of descendants and duty cycle. For both state representations, we show through experiments on a testbed of 14 mica2 sensor nodes running ALPL that enabling nodes to set their listening mode according to their local state reduces global energy cost by 35% and provides more balanced energy consumption over the case of BMAC.
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