Enhancing Network Availability by Tolerance Control in Multi-Sink Wireless Sensor Network

Chiming Huang, Rei-Heng Cheng, Shau-Ruei Chen, Chung-I Li
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引用次数: 39

Abstract

The limited energy in wireless sensor network has always been a key topic. Most previous studies usually regulate the network loading by periodically directing the data flow to different sinks in order to extend the overall life-time of network and enhance the network availability or data delivery. However, the time and place that an event occurred can not be estimated, thus regular information flow switching may not be able to balance the actual loading of network. Another, multiple paths to sinks for each node are established in the tolerance area defined by a pre-defined difference between the cost, i.e. hop counts away from sinks, of paths to different sinks such that each node in-between multiple sinks can distribute the forwarding burden among the paths to different sinks. Since sending data to a farther sink consumes much more overall energy of network, the gain of data delivery should be evaluated at the sacrifice of energy consumption. In this paper, a quantized model is proposed to evaluate the tradeoff between energy consumption and data delivery under non-uniformly events triggering in network. The tradeoff between network availability and energy consumption would be analyzed and the corresponding simulation results would be included.
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多sink无线传感器网络中容错控制提高网络可用性
无线传感器网络中能量的有限性一直是一个重要的问题。以往的研究大多是通过周期性地将数据流引导到不同的sink来调节网络负载,从而延长网络的整体生命周期,提高网络的可用性或数据传输能力。然而,事件发生的时间和地点无法估计,因此定期的信息流切换可能无法平衡网络的实际负载。另一种方法是,在由预先定义的到达不同汇点的路径的开销(即到达汇点的跳数)之间的差异定义的容错区域内,为每个节点建立多条到达汇点的路径,这样多个汇点之间的每个节点可以在到达不同汇点的路径之间分配转发负担。由于将数据发送到更远的sink会消耗更多的网络总能量,因此应该以能量消耗的牺牲来评估数据传输的增益。本文提出了一个量化模型来评估网络中非均匀事件触发下的能量消耗和数据传输之间的权衡。分析了网络可用性和能耗之间的权衡,并给出了相应的仿真结果。
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