Ambient Energy Harvesting for Low Powered Wireless Sensor Network based Smart Grid Applications

M. Faheem, M. Ashraf, R. A. Butt, B. Raza, Md. Asri Ngadi, V. C. Gungor
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引用次数: 7

Abstract

Limited battery lifetime is one of the most critical issues for wireless sensor networks (WSNs)-based smart grid (SG) applications. Recently, ambient energy harvesting (AEH) has been considered to significantly improve the network lifetime of the WSNs-based SG applications. However, extracting a significant amount of energy from the ambient energy resource due to time varying links quality affected by power grid environments is the main issue for WSNs-based applications in SG. In this paper, we propose a novel multi-source energy harvesting mechanisms for WSNs-based SG applications. The propose hybrid ambient energy harvesting framework through the designed circuitry successfully harvests massive power density by capturing the radial electric field (EF) and ambient radio frequency WiFi 2.4GHz band signals present in the vicinity of 500kV power grid station. The design energy harvesting schemes have been implemented on the recently developed routing protocol for SG applications. The experiments using EstiNet9.0, demonstrate that the designed framework is efficient in terms of energy harvesting capabilities to enable a long-lasting lifetime of the WSNs-based smart grid applications.
基于低功耗无线传感器网络的智能电网应用环境能量收集
有限的电池寿命是基于无线传感器网络(WSNs)的智能电网(SG)应用的最关键问题之一。近年来,环境能量收集(AEH)被认为可以显著提高基于wsn的SG应用的网络寿命。然而,由于受电网环境影响的时变链路质量,从环境能源中提取大量能量是基于wsn的SG应用的主要问题。在本文中,我们提出了一种新的多源能量收集机制,用于基于wsns的SG应用。通过设计的电路,提出了混合环境能量收集框架,通过捕获500kV电网附近的径向电场(EF)和环境射频WiFi 2.4GHz频段信号,成功地收集了大量的功率密度。设计的能量收集方案已在最近开发的用于SG应用的路由协议上实现。使用EstiNet9.0进行的实验表明,所设计的框架在能量收集能力方面是有效的,可以实现基于wsn的智能电网应用程序的长寿命。
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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