ATC是一种异构无线传感器网络的非对称拓扑控制算法

M. Nickray, A. Afzali-Kusha
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摘要

本文提出了一种无线传感器网络的非对称拓扑控制(ATC)算法。在该算法中,传感器节点增量调整其传输。该算法分为邻居发现、构造拓扑和数据传输三个阶段。在邻居发现阶段,节点交换了各自的位置和最大传输功率。在第二阶段,各传感器节点协同调整其传输范围(功率),同时保持网络连通性与以最大功率传输的情况相同。在第三阶段,所有节点以调整后的传输功率传输数据。为了评估所提出算法的效率,将其性能与先前发表的作品进行了比较。该算法不仅保留了功率、平均节点度和平均链路长度,而且在没有常规错误处理机制的情况下也能正常工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ATC an asymmetric topology control algorithm for heterogeneous wireless sensor networks
In this paper, we present an asymmetric topology control (ATC) algorithm for wireless sensor networks. In this algorithm, the sensor nodes incrementally adjust their transmission. The algorithm had three phases of Neighbor Discovery, Construct Topology, and Data Transmission. In the phase of Neighbor Discovery, the nodes exchanged their positions and maximum transmission powers. In phase II, each sensor node collaboratively adjusted its transmission range (power) while keeping the network connectivity the same as that of the case of transmitting with the maximum power. In phase III, all the nodes transmit data with the adjusted transmission power. To assess the efficiency of the proposed algorithm, its performance is compared to those of previously published works. Our algorithm not only preserve power and average node degree and average link length, it has privileges which enable it to work properly even in the absence of conventional error handling mechanisms.
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