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首页> 外文期刊>Networking, IEEE/ACM Transactions on >S4: Small State and Small Stretch Compact Routing Protocol for Large Static Wireless Networks
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S4: Small State and Small Stretch Compact Routing Protocol for Large Static Wireless Networks

机译:S4:用于大型静态无线网络的小状态和小扩展紧凑型路由协议

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摘要

Routing protocols for large wireless networks must address the challenges of reliable packet delivery at increasingly large scales and with highly limited resources. Attempts to reduce routing state can result in undesirable worst-case routing performance, as measured by stretch, which is the ratio of the hop count of the selected path to that of the optimal path. We present a new routing protocol, Small State and Small Stretch (S4), which jointly minimizes the state and stretch. S4 uses a combination of beacon distance-vector-based global routing state and scoped distance-vector-based local routing state to achieve a worst-case stretch of 3 using $O(sqrt{N})$ routing state per node in an $N$-node network. Its average routing stretch is close to 1. S4 further incorporates local failure recovery to achieve resilience to dynamic topology changes. We use multiple simulation environments to assess performance claims at scale and use experiments in a 42-node wireless sensor network testbed to evaluate performance under realistic RF and failure dynamics. The results show that S4 achieves scalability, efficiency, and resilience in a wide range of scenarios.
机译:大型无线网络的路由协议必须应对规模越来越大且资源极为有限的可靠数据包传送的挑战。尝试减少路由状态可能会导致不良的最坏情况的路由性能(如通过扩展度量),这是所选路径的跳数与最佳路径的跳数之比。我们提出了一种新的路由协议,小状态和小扩展(S4),它将状态和扩展最小化。 S4结合使用基于信标距离矢量的全局路由状态和基于范围距离矢量的本地路由状态,以在$中每个节点使用$ O(sqrt {N})$路由状态来实现最坏情况下的3扩展。 N $节点网络。它的平均路由范围接近1。S4进一步结合了本地故障恢复功能,以实现对动态拓扑变化的恢复能力。我们使用多种仿真环境来大规模评估性能要求,并在42节点无线传感器网络测试平台中使用实验来评估实际RF和故障动态下的性能。结果表明,S4在广泛的场景中都实现了可伸缩性,效率和弹性。

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