Using reconfigurable hardware devices in WSNs for accelerating and reducing the power consumption of header processing tasks

Georgios-Grigorios Mplemenos, P. Christou, I. Papaefstathiou
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引用次数: 7

Abstract

In this paper, a pioneering platform is introduced, which utilizes all the advantages of CPLDs in order to enhance the processing power of the sensor nodes and, more importantly, significantly reduce the overall energy consumption in heavy demanding tasks such as routing and header processing. This new platform, accelerates the cost estimation algorithm of the XMesh routing protocol by 606 times. At the same time, and more importantly, there is a reduction in the measured energy consumption by 97%. Moreover, the proposed system can accelerate by three orders of magnitude the header checksum calculation scheme, while it consumes 96.33% less energy than the corresponding standard software implementations. Since this is the first time ever that such a hardware-based scheme is used in a WSN environment, we strongly believe that this paper can be a first reference for a new design paradigm for WSN nodes which will include CPLDs for the actual data/network processing.
在无线传感器网络中使用可重构硬件设备来加速和降低报头处理任务的功耗
本文介绍了一个开创性的平台,该平台充分利用cpld的所有优点,提高传感器节点的处理能力,更重要的是,在路由和报头处理等高要求任务中显著降低总体能耗。该平台将XMesh路由协议的成本估计算法提高了606倍。同时,更重要的是,测量的能源消耗减少了97%。此外,该系统可以将报头校验和计算方案的速度提高3个数量级,而能耗比相应的标准软件实现节省96.33%。由于这是有史以来第一次在WSN环境中使用这种基于硬件的方案,我们坚信本文可以成为WSN节点的新设计范例的第一个参考,该节点将包括用于实际数据/网络处理的cpld。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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