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A Distributed Slot Assignment Algorithm with Minimum Jitter and Delay Guarantee for Real Time Applications for Wireless Sensor Networks

机译:无线传感器网络实时应用中具有最小抖动和时延保证的分布式时隙分配算法

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摘要

This work presents a distributed time slot assignment algorithm which adopts TDMA as Medium Access Control, specially suited to support applications with strict delay, jitter and throughput requirements characterized by convergecast traffic patterns in sensor networks. (E.g. wireless video surveillance sensor networks). Our algorithm has three characteristics: (1) Every node is guaranteed a path to the base station for its data delivery. In the path, sufficient resource is reserved and weighted fairness can be achieved. (2) It uses cascading time slot assignment and jitter minimization algorithm in each node to minimize jitter and end to end delay (3) Nodes are only active during their scheduled slots and sleep otherwise. This offers energy saving by reducing idle listening and avoiding overhearing. The performance of the proposed algorithm is evaluated over simulations and analyzed theoretically in comparison with FlexiTP which is a recently proposed delay aware MAC protocol. The results show that our algorithm provides lower end-to-end delay, jitter and higher throughput.
机译:这项工作提出了一种分布式时隙分配算法,该算法采用TDMA作为媒体访问控制,特别适合于支持具有严格延迟,抖动和吞吐量要求的应用,这些应用的特征是传感器网络中的聚合广播流量模式。 (例如,无线视频监控传感器网络)。我们的算法具有三个特征:(1)确保每个节点都有一条通往基站的路径,以进行数据传输。在这条路径中,将保留足够的资源并可以实现加权公平性。 (2)它在每个节点中使用级联时隙分配和抖动最小化算法来最小化抖动和端到端延迟(3)节点仅在其调度的时隙内处于活动状态,否则处于睡眠状态。这样可以减少空闲的聆听并避免偷听,从而节省能源。与最近提出的延迟感知MAC协议FlexiTP相比,该算法的性能通过仿真进行了评估,并在理论上进行了分析。结果表明,我们的算法提供了更低的端到端延迟,抖动和更高的吞吐量。

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