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A Distributed Algorithm: Minimum-Latency Collision-Avoidance Multiple-Data-Aggregation Scheduling in Multi-Channel WSNs

机译:分布式算法:多通道WSN中的最小延迟碰撞 - 避免多数据汇聚调度

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There is much effort which aimed at the data collection scheduling algorithm development to minimize the latency in wireless sensor networks (WSNs). Most of previous works investigating the minimum latency of data collection issue have an ideal assumption that the network is a centralized system, in which the entire network is completely synchronized with full knowledge of components. In addition, most of existing works often assume that any data in the network are allowed to be aggregated into one packet and the network models are often treated as tree structures. However, in practical, WSNs are more likely to be distributed systems, since each sensor's knowledge is disjointed to each other, and a fixed number of data are allowed to be aggregated into one packet. In this paper, we investigate the problem of minimum latency for the data aggregation without data collision in the distributed WSNs when the sensors are considered to be assigned the channels, termed the minimum-latency collision-avoidance multiple-data-aggregation scheduling with multi-channel (MLCAMDAS-MC) problem. A new distributed algorithm, termed the distributed collision-avoidance scheduling (DCAS) algorithm, is proposed to address the MLCAMDAS-MC. Finally, we conduct extensive simulations to demonstrate the performance of DCAS.
机译:存在很多努力,旨在数据收集调度算法开发,以最小化无线传感器网络(WSN)中的延迟。以前的大多数作品调查数据收集问题的最小延迟具有理想的假设,即网络是一个集中式系统,其中整个网络完全同步了与全面的组件知识相同步。此外,大多数现有工作通常假设允许网络中的任何数据聚合到一个数据包中,并且网络模型通常被视为树结构。然而,实际上,WSN更有可能是分布式系统,因为每个传感器的知识彼此脱节,并且允许将固定数量的数据聚合到一个分组中。在本文中,我们调查数据聚合的最小延迟的问题,当被认为被分配传感器时,在分布式WSN中没有数据冲突的数据碰撞时,称为频道的最小延迟碰撞 - 避免多数据聚合调度与多重 - 频道(MLCAMDAS-MC)问题。提出了一种新的分布式算法,称为分布式碰撞调度(DCAS)算法,以解决MLCAMDAS-MC。最后,我们进行广泛的模拟以证明DCA的性能。

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