异步无线传感器网络中机会路由的最优候选集

Xinming Zhang, Fan Yan, Lei Tao, D. Sung
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引用次数: 8

摘要

在异步无线传感器网络中,寻找最优候选集可以通过平衡从发送端到中继端的一跳开销和中继端到接收器的剩余开销来显著提高机会路由协议的效率。候选集越大,等待候选唤醒的单跳等待代价越小,但报文偏离最短路径的可能性越大,剩余代价越大。每个候选点的剩余代价可以用来构造一个坐标系统。坐标值高的节点的邻居被排除在候选集中,因此,我们可以通过简单地选取第一个唤醒候选来选择下一跳中继。在本文中,我们提出了一种类似Bellman-Ford算法的分布式算法来构造一个坐标系统,并为每个节点找到一个最优候选集。此外,我们还提出了一种算法,该算法可以诱导可接受的开销来维护坐标系和每个节点的最优候选集。我们还使用仿真结果表明,我们提出的机会路由协议在延迟,能量效率和错过率方面比传统策略更有效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal candidate set for opportunistic routing in asynchronous wireless sensor networks
In asynchronous wireless sensor networks, finding an optimal candidate set can significantly improve the efficiency of an opportunistic routing protocol by balancing the one-hop cost from a sender to a relay and the remaining cost from the relay to the sink. A larger candidate set indicates smaller one-hop waiting cost to wait for a candidate to wake up, however, a packet is more likely to deviate from the shortest path, which will induce larger remaining cost. Remaining cost of each candidate can be used to construct a coordinate system. Neighbors of a node with high coordinate value is excluded from the candidate set, thus, we can select the next-hop relay by simply taking the first wake-up candidate. In this paper, we propose a distributed algorithm which is similar to the Bellman-Ford algorithm to construct a coordinate system and find an optimal candidate set for each node. Moreover, we propose an algorithm which induces acceptable overhead to maintain the coordinate system and each node's optimal candidate set. We also use simulation results to show that our proposed opportunistic routing protocol is more efficient than conventional strategies in terms of delay, energy efficiency, and miss ratio.
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