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Optimum ConvergeCast Scheduling in Wireless Sensor Networks

机译:无线传感器网络中的最佳ConvergeCast调度

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Target monitoring is an important ConvergeCast application of wireless sensor networks in which sensors monitor a set of targets, and forward the collected data using multi-hop routing to the same location, called the sink. Nearly all previously proposed models only output a set of link transmission configurations, i.e., sets of links that can simultaneously transmit, without providing an ordering of the transmission configurations, nor guaranteeing that such an ordering exists using only the prescribed number of slots. As such, they do not provide a valid schedule to achieve ConvergeCast, and only give a lower bound on the number of slots required for a schedule. In this paper, we propose a first one phase decomposition model and algorithm that outputs a complete and optimum scheduling, i.e., with the output consisting in an ordered sequence of transmission configurations that achieves ConvergeCast. In addition, we show that the resulting transmission graph is not necessarily a tree. The resulting algorithm provides much better schedules, up to 15% less time slots required, than those of the previous best available mathematical programming or heuristic approaches in the literature.
机译:目标监视是无线传感器网络的重要ConvergeCast应用程序,其中传感器监视一组目标,并使用多跳路由将收集到的数据转发到同一位置(称为接收器)。几乎所有先前提出的模型仅输出一组链路传输配置,即,可以同时传输而无需提供传输配置的顺序的链路组,也不保证仅使用规定数量的时隙就存在这种顺序。因此,它们不提供实现ConvergeCast的有效时间表,而仅给出时间表所需的插槽数量的下限。在本文中,我们提出了第一个单相分解模型和算法,该模型和算法可输出完整和最佳的调度,即输出包含实现ConvergeCast的传输配置的有序序列。此外,我们证明了生成的透射图不一定是一棵树。与文献中以前最好的可用数学编程或启发式方法相比,所产生的算法提供了更好的调度,所需的时隙最多减少了15%。

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