链路不可靠无线传感器网络中动态最小跳数选择的鲁棒路由算法

Yuanjia Ma, Marifel Capili Kummer
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引用次数: 0

摘要

有效路由是无线传感器网络中遇到的主要问题之一,近年来,人们对能量和时延的优化方法进行了广泛的研究。然而,在化学工厂、油田、核电站、连接不可靠的战场等恶劣条件下,几乎没有进行过任何工作。因此,如何在高风险环境下保证数据传输的稳定性和可靠性成为一个新的挑战。本文提出了一种基于动态规划的动态最小跳数选择(DMHS)鲁棒路由协议。其主要思想是利用节点最小跳数动态调整的分布式路由发现策略进行概率转发决策。仿真实验表明,与传统的能效算法相比,DMHS算法在超过700个节点时,寿命提高了约15%,并且在节点死亡率从20%到60%的情况下,平均投递率也有更好的表现。
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A Robust Routing Algorithm with Dynamic Minimum Hop Selection in Wireless Sensor Networks with Unreliable Links
The efficient routing poses to be one of the main issues encountered in wireless sensor networks, and, in recent years, there has been carried out extensive investigation of the optimization method of energy and latency. Nonetheless, little work has already been done under austere conditions, for instance, chemical plants, oil fields, nuclear power plant, and the battlefield with unreliable links. So, it appears to be a new challenging point of concern that how to ensure the stability as well as reliability of data transmission under the high risk environment. In this research work, we have introduced a robust routing protocol, a novel design algorithm with dynamic minimum hop selection (DMHS) by dynamic programming. The major idea is making the probabilistic forwarding decisions for the utilization of a distributed routing discovery strategy with the node’s minimum hop dynamic adjustment. Simulation experiments revealed that, in comparison with conventional energy efficiency algorithm, the DMHS algorithm offers approximately 15% increases of lifetime more than 700 nodes, in addition to having better performance on average delivery rate at the nodes death rate from 20% to 60%.
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