Revising Quorum Systems for Energy Conservation in Sensor Networks

D. Tulone, E. Demaine
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引用次数: 3

Abstract

Quorum systems are well-known techniques designed to enhance the performance of distributed systems, such as to reduce the access cost per operation, to balance the load, and to improve the system scalability. All of these properties make quorum systems particularly attractive for large- scale sensor applications involving coordinated tasks, such as rescue applications. In this paper we analyze quorum techniques in the specific context of sensor networks and energy conservation, and show why quorum systems designed for wired networks and their metrics fail to address the challenges introduced by sensor networks. We then redefine quorum metrics such as access cost, load balance, and capacity in a way that takes into account the limitations and the characteristics of sensor networks, and discuss some energy-efficient design strategies. In addition, we propose a family of energy-efficient quorum systems and a particular construction, called Regional quorum system (RQ), which reduces the quorum access cost. Finally, we propose a data diffusion protocol built on top of the RQ system, which improves energy consumption by reducing message transmissions and collisions, and increases the available bandwidth. We apply our diffusion protocol to analyze the RQ system using our novel metrics.
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传感器网络节能仲裁系统的修正
仲裁系统是一种众所周知的技术,旨在提高分布式系统的性能,例如降低每次操作的访问成本、平衡负载和提高系统的可伸缩性。所有这些特性使得仲裁系统对涉及协调任务的大型传感器应用特别有吸引力,例如救援应用。在本文中,我们在传感器网络和节能的特定背景下分析了仲裁技术,并说明了为什么为有线网络设计的仲裁系统及其度量不能解决传感器网络带来的挑战。然后,我们以考虑传感器网络的局限性和特征的方式重新定义quorum指标,如访问成本、负载平衡和容量,并讨论一些节能设计策略。此外,我们还提出了一系列节能仲裁系统和一种特殊的结构,称为区域仲裁系统(RQ),它降低了仲裁访问成本。最后,我们提出了一种建立在RQ系统之上的数据扩散协议,该协议通过减少消息传输和冲突来改善能耗,并增加可用带宽。我们应用我们的扩散协议来分析RQ系统使用我们的新指标。
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