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On Minimizing Interference-Free Broadcast Latency in Duty-Cycled Wireless Sensor Networks

机译:最小化占空比无线传感器网络中的无干扰广播延迟

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摘要

Broadcast is a crucial operation for routing discovery, data collection and code update in wireless sensor networks, and has attracted plenty of researches recently. In duty-cycled wireless sensor networks, nodes periodically switch between the active and sleep states, which differs from the assumption of most existing broadcast algorithms and thus makes these algorithms unsuitable. In this paper, we focus on the problem of minimizing the broadcast latency in duty-cycled wireless sensor networks while ensuring the transmissions are interference-free. We show that this problem is NP-hard, and propose a novel approximation algorithm with provable performance guarantee. We also prove that the overhead of our proposed algorithm in terms of the number of transmissions is within constant times of the optimum overhead. Extensive simulations are conducted to evaluate the performance of our proposed algorithm and the simulation results confirm the efficiency of our proposed algorithm.
机译:广播是无线传感器网络中路由发现,数据收集和代码更新的关键操作,并且最近吸引了许多研究。在占空比无线传感器网络中,节点定期在活动状态和睡眠状态之间切换,这与大多数现有广播算法的假设不同,因此使这些算法不合适。在本文中,我们关注于最小化占空比无线传感器网络中的广播延迟同时确保传输无干扰的问题。我们证明这个问题是NP难的,并提出了一种具有可证明性能保证的新颖近似算法。我们还证明,就传输次数而言,我们提出的算法的开销在最佳开销的恒定时间内。进行了广泛的仿真以评估我们提出的算法的性能,并且仿真结果证实了我们提出的算法的效率。

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