A fault-tolerant topology control algorithm for heterogeneous wireless networks

Xu Yejun, Huacheng Qi
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Abstract

Topology control of wireless ad hoc networks is a key design challenge which will affect the lifetime and performance of such networks. The topology can be controlled by selecting which neighbors to communicate directly and varying the transmission power at each node. Some fault tolerant topologies have already been proposed recently. However, most of these topologies require all nodes to have the same transmission range. Actually, there are cases that nodes have different transmission ranges. In this paper, we analyze the sufficient condition to construct k-connected topology in heterogeneous networks. Then, a topology control algorithm is proposed. Our proposed algorithm can be executed fully distributed by each node and only uses location information of 1-hop neighbors. An advantage of this algorithm is that it can be used in both 2-dimensional and 3-dimensional wireless ad hoc networks.
异构无线网络的容错拓扑控制算法
无线自组织网络的拓扑控制是一个关键的设计难题,它将影响无线自组织网络的寿命和性能。可以通过选择直接通信的邻居和改变每个节点的传输功率来控制拓扑结构。最近已经提出了一些容错拓扑。然而,这些拓扑中的大多数都要求所有节点具有相同的传输范围。实际上,在某些情况下,节点具有不同的传输范围。本文分析了异构网络中构造k连通拓扑的充分条件。然后,提出了一种拓扑控制算法。我们提出的算法可以在每个节点上完全分布式执行,并且只使用1跳邻居的位置信息。该算法的优点是可以在二维和三维无线自组织网络中使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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