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Toward Ultra Low-Power Hardware Specialization of a Wireless Sensor Network Node

机译:走向超低功耗硬件专业技术的无线传感器网络节点

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Research in micro-electro-mechanical systems (MEMS) technology, wireless communications, and digital electronics has enabled the future emergence of Wireless Sensor Networks (WSN). These systems consist of low-cost and low-power sensor nodes that communicate efficiently over short distances. It has been shown that power consumption is the biggest design constraint for such systems. Currently, WSN nodes are being designed using low-power micro-controllers. However, their power dissipation is still orders of magnitude too high. In this paper, we propose an approach to hardware specialization that uses power-gated distributed hardware tasks. We target control-oriented tasks running on WSN nodes and present, as a case study, a temperature monitoring application. Our approach is validated experimentally and shows prominent power gains over software implementation on a low-power micro-controller such as the MSP430.
机译:微机电系统(MEMS)技术,无线通信和数字电子产品的研究能够实现无线传感器网络(WSN)的出现。这些系统由低成本和低功耗传感器节点组成,可在短距离上有效地通信。已经表明,功耗是这种系统的最大设计约束。目前,使用低功率微控制器设计了WSN节点。然而,他们的功率耗散仍然是太高的秩序。在本文中,我们提出了一种方法来实现使用电源门控分布式硬件任务的硬件专业化。我们针对WSN节点上运行的控制定向任务,并作为案例研究,温度监测应用。我们的方法是通过实验验证的,并在低功耗微控制器(如MSP430)上显示出突出的电源增益。

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