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Opportunistic communications based on distributed width-controllable braided multipath routing in wireless sensor networks

机译:无线传感器网络中基于分布宽度可控制的编织多径路由的机会通信

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Multipath routing, especially braided multipath routing (BMR), has become a powerful tool to provide reliable and energy-efficient packet transmissions against wireless links losses and node failures. In previous literatures, most of the construction methods of braided multipath routes are centralized and inefficient. By exploiting the broadcast nature of wireless mediums, opportunistic routings proposed recently bring much more reliability and efficiency for wireless communications. In this paper, with the idea of opportunistic routings, we propose a distributed width-controllable braided multipath routing (WC-BMR) based on local neighbor's information for data collections in wireless sensor networks. By only attaching a little information to data packets, the transmission direction can be restricted near the main route. Heterogeneous widths, namely, different widths on different hops from the source to the sink can also be supported to adapt to the dynamic and heterogeneous wireless links. Then, to avoid packet collisions, a novel time schedule strategy is given. In terms of the reliability, delay and transmission overhead, the performance of WC-BMR is analyzed theoretically. In addition, a kind of less cooperative topology (LC-Topology) in the WC-BMR is found, which brings no or less reliability gain. And modified cooperative WC-BMR (MCWC-BMR) with the detection algorithm for LC-Topology is proposed to maintain the high reliability and efficiency, which allows parents nodes to choose the best main route locally and dynamically. Using TOSSIM platform, WC-BMR and MCWC-BMR are both evaluated with some previous baseline approaches. Simulation results reveal that both WC-BMR and MCWC-BMR, especially the latter, can achieve higher reliability and efficiency, as well as keep lower delay under various network settings. (C) 2015 Elsevier B.V. All rights reserved.
机译:多径路由,尤其是编织多径路由(BMR),已成为一种强大的工具,可提供可靠且节能的数据包传输,以防止无线链路丢失和节点故障。在先前的文献中,编织多路径路线的大多数构造方法是集中式的并且效率低下。通过利用无线介质的广播性质,最近提出的机会路由为无线通信带来了更多的可靠性和效率。在本文中,基于机会路由的思想,我们提出了一种基于本地邻居信息的分布式宽度可控制的编织多路径路由(WC-BMR),用于无线传感器网络中的数据收集。通过仅向数据分组附加少量信息,可以将传输方向限制在主路径附近。还可以支持异构宽度,即从源到接收点的不同跃点上的不同宽度,以适应动态和异构无线链路。然后,为了避免数据包冲突,给出了一种新颖的时间表策略。从可靠性,时延和传输开销方面,从理论上分析了WC-BMR的性能。另外,在WC-BMR中发现了一种不太协作的拓扑(LC拓扑),这带来了几乎没有可靠性提高。提出了一种改进的协作式WC-BMR(MCWC-BMR),该算法结合了LC-Topology的检测算法,可以保持较高的可靠性和效率,并允许父节点在本地动态选择最佳的主路由。使用TOSSIM平台,可以使用某些先前的基线方法来评估WC-BMR和MCWC-BMR。仿真结果表明,WC-BMR和MCWC-BMR尤其是后者,都可以实现更高的可靠性和效率,并在各种网络设置下保持较低的延迟。 (C)2015 Elsevier B.V.保留所有权利。

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