首页> 外文会议>International Workshop on Embedded Computer Systems: Architectures, Modeling, and Simulation(SAMOS 2007); 20070716-19; Samos(GR) >An Embedded Platform with Duty-Cycled Radio and Processing Subsystems for Wireless Sensor Networks
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An Embedded Platform with Duty-Cycled Radio and Processing Subsystems for Wireless Sensor Networks

机译:用于无线传感器网络的带有占空比无线电和处理子系统的嵌入式平台

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Wireless sensor nodes are increasingly being tasked with computation and communication intensive functions while still subject to constraints related to energy availability. On these embedded platforms, once all low power design techniques have been explored, duty-cycling the various subsystems remains the primary option to meet the energy and power constraints. This requires the ability to provide spurts of high MIPS and high bandwidth connections. However, due to the large overheads associated with duty-cycling the computation and communication subsystems, existing high performance sensor platforms are not efficient in supporting such an option. In this paper, we present the design and optimizations taken in a wireless gateway node (WGN) that bridges data from wireless sensor networks to Wi-Fi networks in an on-demand basis. We discuss our strategies to reduce duty-cycling related costs by partitioning the system and by reducing the amount of time required to activate or deactivate the high-powered components. We compare the design choices and performance parameters with those made in the Intel Stargate platform to show the effectiveness of duty-cycling on our platform. We have built a working prototype, and the experimental results with two different power management schemes show significant reductions in latency and average power consumption compared to the Stargate.
机译:无线传感器节点越来越多地承担着计算和通信密集功能的任务,同时仍然受到与能源可用性相关的约束。在这些嵌入式平台上,一旦研究了所有低功耗设计技术,对各个子系统进行占空比调整仍然是满足能源和功率约束的主要选择。这要求提供高MIPS和高带宽连接的能力。但是,由于与计算和通信子系统的占空比相关的大量开销,因此现有的高性能传感器平台在支持这种选项方面效率不高。在本文中,我们介绍了无线网关节点(WGN)所进行的设计和优化,该节点按需将数据从无线传感器网络桥接到Wi-Fi网络。我们讨论了通过划分系统并减少激活或停用高功率组件所需的时间来减少与占空比相关的成本的策略。我们将设计选择和性能参数与英特尔Stargate平台中的设计选择和性能参数进行了比较,以证明在我们的平台上执行占空比的有效性。我们已经建立了一个可运行的原型,并且两种不同的电源管理方案的实验结果表明,与Stargate相比,延迟和平均功耗都有了明显的降低。

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