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DutyCon: A Dynamic Duty-Cycle Control Approach to End-to-End Delay Guarantees in Wireless Sensor Networks

机译:DutyCon:无线传感器网络中端到端延迟保证的动态占空比控制方法

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摘要

It is well known that periodically putting nodes into sleep can effectively save energy in wireless sensor networks at the cost of increased communication delays. However, most existing work mainly focuses on the static sleep scheduling, which cannot guarantee the desired delay when the network conditions change dynamically. In many applications with user-specified end-to-end delay requirements, the duty cycle of every node should be tuned individually at runtime based on the network conditions to achieve the desired end-to-end delay guarantees and energy efficiency. In this article, we propose DutyCon, a control theory-based dynamic duty-cycle control approach. DutyCon decomposes the end-to-end delay guarantee problem into a set of single-hop delay guarantee problems along each data flow in the network. We then formulate the single-hop delay guarantee problem as a dynamic feedback control problem and design the controller rigorously, based on feedback control theory, for analytic assurance of control accuracy and system stability. DutyCon also features a queuing delay adaptation scheme that adapts the duty cycle of each node to unpredictable incoming packet rates, as well as a novel energy-balancing approach that extends the network lifetime by dynamically adjusting the delay requirement allocated to each hop. Our empirical results on a hardware testbed demonstrate that DutyCon can effectively achieve the desired trade-off between end-to-end delay and energy conservation. Extensive simulation results also show that DutyCon outperforms two baseline sleep scheduling protocols by having more energy savings while meeting the end-to-end delay requirements.
机译:众所周知,定期使节点进入睡眠状态可以以增加通信延迟为代价有效地节省无线传感器网络中的能量。但是,大多数现有的工作主要集中在静态睡眠调度上,当网络条件动态变化时,它不能保证所需的延迟。在许多具有用户指定的端到端延迟要求的应用中,应在运行时根据网络条件分别调整每个节点的占空比,以实现所需的端到端延迟保证和能效。在本文中,我们提出了DutyCon,一种基于控制理论的动态占空比控制方法。 DutyCon将端到端的延迟保证问题分解为一组沿网络中每个数据流的单跳延迟保证问题。然后将单跳时延保证问题表述为动态反馈控制问题,并基于反馈控制理论对控制器进行严格设计,以分析保证控制精度和系统稳定性。 DutyCon还具有排队延迟自适应方案,该方案使每个节点的占空比适应不可预测的传入数据包速率,以及一种新颖的能量平衡方法,可通过动态调整分配给每个跃点的延迟要求来延长网络寿命。我们在硬件测试平台上的经验结果表明,DutyCon可以有效地实现端到端延迟与节能之间的理想平衡。大量的仿真结果还表明,DutyCon在满足端到端延迟要求的同时,节省了更多能源,性能优于两种基准睡眠计划协议。

著录项

  • 来源
    《ACM transactions on sensor networks》 |2013年第4期|42.1-42.33|共33页
  • 作者单位

    Department of Electrical and Computer Engineering, Ohio State University, 805 Dreese Labs, 2015 Neil Ave., Columbus, OH 43210;

    Department of Electrical and Computer Engineering, Ohio State University, 805 Dreese Labs, 2015 Neil Ave., Columbus, OH 43210;

    Department of Electrical and Computer Engineering, Ohio State University, 805 Dreese Labs, 2015 Neil Ave., Columbus, OH 43210;

    Department of Computer Science and Engineering, Michigan State University, 3115 Engineering Building, East Lansing, MI 48824-1226;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Wireless sensor networks; duty cycle; delay guarantee;

    机译:无线传感器网络;占空比;延迟保证;

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