D2CS: Dynamic Duty Cycle Scheme in an Opportunistic Routing Sensor Network

Bingxin Niu, Heng Qi, Keqiu Li, Xiulong Liu, Weilian Xue
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引用次数: 1

Abstract

In Wireless Sensor Networks (WSNs), end-to-end delay is an important metric because the sensed information is necessary to be transmitted to the sink node within a predefined time threshold. Therefore, opportunistic routing protocols are proposed to reduce the end-to-end delay. As a matter of fact, increasing the number of wake-up slots will certainly reduce the transmission delay, however, also consumes more energy. Hence, it is interesting to control the number of wake-up slots to investigate the trade-off between the end-to-end delay and the energy-efficiency. To the best of our knowledge, no existing work takes both of end-to-end delay and energy-efficiency into consideration in the opportunistic routing networks. Therefore, this paper studies how to minimize the energy-consumption while guaranteeing that the expected end-to-end delay is below a given threshold. To solve this problem, we propose an energy-based Dynamic Duty Cycle Scheme(D2CS) in opportunistic routing network. Specifically, we first present an analytical model to measure the expected end-to-end delay. Then, we decompose the studied problem into a set of single-hop delay guarantee problems and using the feedback controller to approximate the optimal solution. Finally, extensive simulations are conducted to evaluate the performance of the proposed D2CS algorithm. The experimental results reveal that our D2CS can guarantee the delay requirement, meanwhile, significantly reduce the energy consumption compared with prior schemes.
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机会路由传感器网络中的动态占空比方案
在无线传感器网络(WSNs)中,端到端延迟是一个重要的度量,因为感知到的信息需要在预定义的时间阈值内传输到汇聚节点。因此,机会路由协议被提出,以减少端到端延迟。事实上,增加唤醒时隙的数量肯定会减少传输延迟,但同时也会消耗更多的能量。因此,通过控制唤醒槽的数量来研究端到端延迟和能量效率之间的权衡是很有趣的。据我们所知,在机会路由网络中,没有现有的工作同时考虑到端到端延迟和能源效率。因此,本文研究如何在保证期望端到端延迟低于给定阈值的情况下使能量消耗最小化。为了解决这个问题,我们提出了一种基于能量的机会路由网络动态占空比方案(D2CS)。具体来说,我们首先提出了一个分析模型来测量预期的端到端延迟。然后,我们将所研究的问题分解为一组单跳时延保证问题,并使用反馈控制器逼近最优解。最后,进行了大量的仿真来评估所提出的D2CS算法的性能。实验结果表明,我们的D2CS在保证延迟要求的同时,与之前的方案相比,显著降低了能耗。
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