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Fault-Aware Flow Control and Multi-Path Routing in Wireless Sensor Networks

机译:无线传感器网络中的故障感知流控制和多路径路由

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摘要

Maintaining an acceptable level of network performance degradation in the presence of faults has been an active research area in wireless sensor networks (WSNs). This paper proposes a scheme to optimize the total network performance by exploiting fault-aware rate control and multi-path routing in WSNs. We use statistical information and estimation on each wireless link to characterize the effect of faults, and develop a leaky-path model. This model takes account of packet loss along fault-paths and the 'shrinking' feature of effective flow at the destination node. Based on the leaky-path model, we propose a fault-correlated flow control and routing ((FC)²R) approach to maximize the network utility of effective flows. A novel distributed algorithm is designed to adjust flow rates adaptively on each path, using multi-path routing. Our simulation results demonstrate that higher effective network throughput, and better fairness, can be achieved by our ((FC)²R) algorithm than the standard optimal flow control in the presence of faults.
机译:在出现故障的情况下保持可接受的网络性能下降水平一直是无线传感器网络(WSN)的积极研究领域。本文提出了一种通过利用WSN中的故障感知速率控制和多路径路由来优化总网络性能的方案。我们在每个无线链路上使用统计信息和估计来表征故障的影响,并开发出泄漏路径模型。该模型考虑了沿故障路径的数据包丢失以及目标节点有效流的“收缩”功能。基于泄漏路径模型,我们提出了一种与故障相关的流量控制和路由((FC)²R)方法,以最大化有效流量的网络实用性。设计了一种新颖的分布式算法,以使用多路径路由来自适应地调整每条路径上的流速。我们的仿真结果表明,在存在故障的情况下,我们的((FC)²R)算法可比标准的最佳流量控制实现更高的有效网络吞吐量和更好的公平性。

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