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Power-Management Techniques for Wireless Sensor Networks and Similar Low-Power Communication Devices Based on Nonrechargeable Batteries

机译:基于不可充电电池的无线传感器网络和类似低功耗通信设备的电源管理技术

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摘要

Despite the well-known advantages of communication solutions based on energy harvesting, there are scenarios where the absence of batteries (supercapacitor only) or the use of rechargeable batteries is not a realistic option. Therefore, the alternative is to extend as much as possible the lifetime of primary cells (nonrechargeable batteries). By assuming low duty-cycle applications, three power-management techniques are combined in a novel way to provide an efficient energy solution for wireless sensor networks nodes or similar communication devices powered by primary cells. Accordingly, a customized node is designed and long-term experiments in laboratory and outdoors are realized. Simulated and empirical results show that the battery lifetime can be drastically enhanced. However, two trade-offs are identified: a significant increase of both data latency and hardware/software complexity. Unattended nodes deployed in outdoors under extreme temperatures, buried sensors (underground communication), and nodes embedded in the structure of buildings, bridges, and roads are some of the target scenarios for this work. Part of the provided guidelines can be used to extend the battery lifetime of communication devices in general.
机译:尽管基于能量收集的通信解决方案具有众所周知的优势,但在某些情况下,没有电池(仅超级电容器)或使用可充电电池并不是现实的选择。因此,替代方案是尽可能延长原电池(不可充电电池)的寿命。通过假设低占空比应用,将三种功率管理技术以新颖的方式组合在一起,从而为无线传感器网络节点或由主小区供电的类似通信设备提供有效的能源解决方案。因此,设计了定制的节点并实现了在实验室和室外的长期实验。仿真和实验结果表明,可以大大延长电池寿命。但是,确定了两个权衡:数据延迟和硬件/软件复杂性的显着增加。无人值守的节点部署在极端温度下的户外环境,埋入式传感器(地下通信)以及嵌入在建筑物,桥梁和道路结构中的节点是这项工作的一些目标方案。通常,所提供准则的一部分可用于延长通信设备的电池寿命。

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  • 来源
    《Journal of computer networks and communications》 |2012年第2期|757291.1-757291.10|共10页
  • 作者单位

    Department of Electrical Engineering/Electrophysics (EE), University of Southern California, Los Angeles, CA 90089, USA;

    Electrical Engineering and Computer Science (EECS), University of Michigan, Ann Arbor, MI 48109, USA;

    Department of Electrical Engineering/Electrophysics (EE), University of Southern California, Los Angeles, CA 90089, USA;

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