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Achieving Asymmetric Sensing Coverage for Duty Cycled Wireless Sensor Networks

机译:实现占空比无线传感器网络的非对称传感范围

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摘要

As a key approach to achieve energy efficiency in sensor networks, sensing coverage has been studied extensively in the literature. Researchers have designed many coverage protocols to provide various kinds of service guarantees on the network lifetime, coverage ratio and detection delay. While these protocols are effective, they are not flexible enough to meet multiple design goals simultaneously. In this paper, we propose a unified sensing coverage architecture for duty cycled wireless sensor networks, called uSense, which features three novel ideas: Asymmetric Architecture, Generic Switching and Global Scheduling. We propose asymmetric architecture based on the conceptual separation of switching from scheduling. Switching is efficiently supported in sensor nodes, while scheduling is done in a separated computational entity, where multiple scheduling algorithms are supported. As an instance, we propose a two-level global coverage algorithm, called uScan. At the first level, coverage is scheduled to activate different portions of an area. We propose an optimal scheduling algorithm to minimize area breach. At the second level, sets of nodes are selected to cover active portions. Importantly, we show the feasibility to obtain optimal set-cover results in linear time if the layout of areas satisfies certain conditions. Through extensive testbed and simulation evaluations, we demonstrate that uSense is a promising architecture to support flexible and efficient coverage in sensor networks.
机译:作为在传感器网络中实现能源效率的关键方法,文献中对传感范围进行了广泛的研究。研究人员设计了许多覆盖协议,以提供有关网络寿命,覆盖率和检测延迟的各种服务保证。尽管这些协议有效,但它们的灵活性不足以同时满足多个设计目标。在本文中,我们提出了一种用于占空比无线传感器网络的统一传感覆盖体系结构,称为uSense,它具有三个新颖的思想:非对称体系结构,通用交换和全局调度。我们基于交换与调度的概念分离提出了一种非对称架构。在传感器节点中有效地支持切换,而调度是在单独的计算实体中完成的,其中支持多种调度算法。例如,我们提出了一种称为uScan的两级全局覆盖算法。在第一层,计划覆盖范围以激活区域的不同部分。我们提出了一种优化调度算法,以最大程度地减少区域破坏。在第二级,选择节点集以覆盖活动部分。重要的是,我们证明了如果区域布局满足某些条件,则可以在线性时间内获得最佳的布套结果。通过广泛的测试平台和仿真评估,我们证明了uSense是一种有前途的体系结构,可支持传感器网络中灵活有效的覆盖范围。

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