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Iterative local solutions for connected dominating set in ad hoc wireless networks

机译:Ad Hoc无线网络中连接主导集的迭代本地解决方案

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We propose a general framework of the iterative local solution (ILS) for computing a connected dominating set (CDS) in ad hoc wireless networks, which include wireless sensor networks (WSNs) and mobile ad hoc networks (MANETs). This approach uses an iterative application of a selected local solution. Each application of the local solution enhances the result obtained from the previous iteration, but each is based on a different node priority scheme. Then, we integrate this iterative process into the process for handling dynamic network topology and propose two extensions: cyclic iterative local solution (CILS) and seamless iterative local solution (SILS). CILS offers a natural extension of ILS to the dynamic environment, but suffers from broken CDS and non-adaptiveness. With a novel use of a monotonically increasing sequence number for dynamic node priority, SILS offers an extension with the desirable properties of correctness, progressiveness, locality, and seamlessness. Extensive simulations are conducted to evaluate the effectiveness of the proposed approach in both static and dynamic environments.
机译:我们提出了一种用于计算Ad Hoc无线网络中的连接主导集(CDS)的迭代本地解决方案(ILS)的一般框架,其包括无线传感器网络(WSN)和移动临时网络(MANET)。该方法使用所选本地解决方案的迭代应用。本地解决方案的每个应用增强了从先前的迭代获得的结果,但每个应用程序基于不同的节点优先级方案。然后,我们将此迭代过程集成到处理动态网络拓扑的过程中,并提出两个扩展:循环迭代本地解决方案(CIL)和无缝迭代本地解决方案(SILS)。 CILS为ILS的自然延伸提供给动态环境,但遭受破坏的CD和非适应性。对于动态节点优先级的单调增加序列号的新颖,SILs提供了具有正确性,逐次,局部性和无缝性的理想性质的扩展。进行广泛的模拟,以评估所提出的方法在静态和动态环境中的有效性。

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