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首页> 外文期刊>ACM Transactions on Embedded Computing Systems >Link Layer Driver Architecture for Unified Radio Power Management in Wireless Sensor Networks
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Link Layer Driver Architecture for Unified Radio Power Management in Wireless Sensor Networks

机译:无线传感器网络中用于统一无线电功率管理的链路层驱动程序体系结构

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Wireless Sensor Networks (WSNs) represent a new generation of networked embedded systems that must achieve long lifetimes on scarce amounts of energy. Since radio communication accounts for the primary source of power drain in these networks, a large number of different radio power management protocols have been proposed. However, the lack of operating system support for flexibly integrating them with a diverse set of applications and network platforms has made them difficult to use. This article focuses on providing link layer support toward realizing a unified power management architecture (UPMA) for WSNs. In contrast to existing monolithic approaches, we provide (i) a set of standard interfaces that separate link layer power management protocols from common MAC level functionality, (ii) an architectural framework that allows applications to easily swap out different power-management protocols depending on its needs, and (iii) a mechanism for coordinating multiple applications with different power management requirements. We have implemented our approach on both the Mica2 and Telosb radio drivers in TinyOS-2.0, the second generation of the de facto standard operating system for WSNs. Microbenchmark results show that our approach can coordinate the power-management requirements of multiple applications in a platform independent fashion while incurring negligible overhead.
机译:无线传感器网络(WSN)代表了新一代的联网嵌入式系统,这些系统必须以很少的能量实现长寿命。由于无线电通信是这些网络中功率消耗的主要来源,因此已经提出了许多不同的无线电功率管理协议。但是,由于缺乏操作系统支持,无法灵活地将它们与各种应用程序和网络平台集成在一起,因此使其难以使用。本文着重于为实现WSN的统一电源管理体系结构(UPMA)提供链路层支持。与现有的单片方法相反,我们提供(i)一套标准接口,这些接口将链路层电源管理协议与常见的MAC级别功能分开;(ii)一种体系结构框架,允许应用程序根据需要轻松交换出不同的电源管理协议(iii)协调具有不同电源管理要求的多个应用程序的机制。我们已经在TinyOS-2.0(用于WSN的事实上的标准操作系统的第二代)中的Mica2和Telosb无线电驱动程序上实现了我们的方法。微基准测试结果表明,我们的方法可以以独立于平台的方式协调多个应用程序的电源管理要求,而产生的开销却可以忽略不计。

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