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ESRT: Event-to-Sink Reliable Transport in Wireless Sensor Networks

机译:ESRT:无线传感器网络中事件到接收的可靠传输

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摘要

Wireless sensor networks (WSN) are event based systems that rely on the collective effort of several microsensor nodes. Reliable event detection at the sink is based on collective information provided by source nodes and not on any individual report. Hence, conventional end-to-end reliability definitions and solutions are inapplicable in the WSN regime and would only lead to a waste of scarce sensor resources. However, the absence of reliable transport altogether can seriously impair event detection. Hence, the WSN paradigm necessitates a collective event-to-sink reliability notion rather than the traditional end-to-end notion. To the best of our knowledge, reliable transport in WSN has not been studied from this perspective before. In order to address this need, a new reliable transport scheme for WSN, the event-to-sink reliable transport (ESRT) protocol, is presented in this paper. ESRT is a novel transport solution developed to achieve reliable event detection in WSN with minimum energy expenditure. It includes a congestion control component that serves the dual purpose of achieving reliability and conserving energy. Importantly, the algorithms of ESRT mainly run on the sink, with minimal functionality required at resource constrained sensor nodes. ESRT protocol operation is determined by the current network state based on the reliability achieved and congestion condition in the network. If the event-to-sink reliability is lower than required, ESRT adjusts the reporting frequency of source nodes aggressively in order to reach the target reliability level as soon as possible. If the reliability is higher than required, then ESRT reduces the reporting frequency conservatively in order to conserve energy while still maintaining reliability. This self-configuring nature of ESRT makes it robust to random, dynamic topology in WSN. An- alytical peformance evaluation and simulation results show that ESRT converges to the desired reliability with minimum energy expenditure, starting from any initial network state.
机译:无线传感器网络(WSN)是基于事件的系统,它依赖于几个微传感器节点的共同努力。在接收器上进行可靠的事件检测是基于源节点提供的集体信息,而不是基于任何单独的报告。因此,常规的端到端可靠性定义和解决方案不适用于WSN机制,只会浪费稀缺的传感器资源。但是,完全缺乏可靠的传输会严重影响事件检测。因此,WSN范式需要一个统一的事件到接收可靠性概念,而不是传统的端到端概念。据我们所知,以前从未从这个角度研究过WSN中可靠的传输。为了满足这一需求,本文提出了一种新的WSN可靠传输方案,即事件到接收可靠传输(ESRT)协议。 ESRT是一种新颖的运输解决方案,旨在以最小的能源消耗在WSN中实现可靠的事件检测。它包括一个拥塞控制组件,该组件具有实现可靠性和节约能源的双重目的。重要的是,ESRT算法主要在接收器上运行,而在资源受限的传感器节点上所需的功能最少。 ESRT协议操作由当前网络状态决定,该状态取决于网络中实现的可靠性和拥塞状况。如果事件到接收器的可靠性低于要求,ESRT会主动调整源节点的报告频率,以便尽快达到目标可靠性级别。如果可靠性高于要求,则ESRT会保守地降低报告频率,以节省能源,同时仍保持可靠性。 ESRT的这种自配置特性使它对于WSN中的随机动态拓扑具有鲁棒性。分析性能评估和仿真结果表明,从任何初始网络状态开始,ESRT都能以最小的能量消耗收敛到所需的可靠性。

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