基于图的无线传感器网络共识协议拓扑控制

Junghun Ryu, Jaewook Yu, E. Noel, K. Tang
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引用次数: 7

摘要

Borel - Cayley图具有直径小、路径短、度低等特点,是一种有效的互连网络候选拓扑。本文提出了一种基于Borel - Cayley图的拓扑控制算法。特别地,我们提出了两种方法来分配Borel Cayley图的节点id作为无线传感器网络的逻辑拓扑。第一个目标是最小化节点之间的通信距离,而整个图被强加为一个逻辑拓扑;而第二种方法的目的是最大化要使用的图的边数,而网络节点受到有限无线电传输范围的约束。在后一种情况下,由于传输范围有限,所得到的拓扑结构是原始BCG的“不完整”版本。在这两种情况下,我们将我们的算法应用于共识协议,并将其性能与随机节点ID分配和其他现有拓扑控制算法进行比较。我们的模拟表明,当共识协议被用作基准应用程序时,所提出的ID分配具有更好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Borel Cayley Graph-Based Topology Control for Consensus Protocol in Wireless Sensor Networks
Borel Cayley graphs have been shown to be an efficient candidate topology in interconnection networks due to their small diameter, short path length, and low degree. In this paper, we propose topology control algorithms based on Borel Cayley graphs. In particular, we propose two methods to assign node IDs of Borel Cayley graphs as logical topologies in wireless sensor networks. The first one aims at minimizing communication distance between nodes, while the entire graph is imposed as a logical topology; while the second one aims at maximizing the number of edges of the graph to be used, while the network nodes are constrained with a finite radio transmission range. In the latter case, due to the finite transmission range, the resultant topology is an “incomplete” version of the original BCG. In both cases, we apply our algorithms in consensus protocol and compare its performance with that of the random node ID assignment and other existing topology control algorithms. Our simulation indicates that the proposed ID assignments have better performance when consensus protocols are used as a benchmark application.
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