Rectenna Systems for RF Energy Harvesting and Wireless Power Transfer

M. Aboualalaa, H. Elsadek
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引用次数: 2

Abstract

With the rapid development of the wireless systems and demands of low-power integrated electronic circuits, various research trends have tended to study the feasibility of powering these circuits by harvesting free energy from ambient electromagnetic space or by using dedicated RF source. Wireless power transmission (WPT) technology was first pursued by Tesla over a century ago. However, it faced several challenges for deployment in real applications. Recently, energy harvesting and WPT technologies have received much attention as a clean and renewable power source. Rectenna (rectifying antenna) system can be used for remotely charging batteries in several sensor networks at internet of things (IoT) applications as commonly used in smart buildings, implanted medical devices and automotive applications. Rectenna, which is used to convert from RF energy to usable DC electrical energy, is mainly a combination between a receiving antenna and a rectifier circuit. This chapter will present several designs for single and multiband rectennas with different characteristics for energy harvesting applications. Single and multiband antennas as well as rectifier circuits with matching networks are introduced for complete successful rectenna circuit models. At the end of the chapter, a dual-band rectenna example is introduced with a detailed description for each section of the rectenna.
射频能量收集和无线能量传输的整流天线系统
随着无线系统的快速发展和对低功耗集成电子电路的需求,各种研究趋势都倾向于研究通过从环境电磁空间收集自由能或使用专用射频源为这些电路供电的可行性。无线电力传输(WPT)技术最早由特斯拉在一个多世纪前提出。然而,在实际应用程序中部署时,它面临着一些挑战。近年来,能量收集和WPT技术作为一种清洁的可再生能源受到了广泛的关注。整流天线(整流天线)系统可用于物联网(IoT)应用中的多个传感器网络中的远程充电电池,通常用于智能建筑,植入式医疗设备和汽车应用。整流天线主要由接收天线和整流电路组成,用于将射频能量转换为可用的直流电能。本章将介绍几种具有不同特性的单波段和多波段整流天线的设计,用于能量收集应用。介绍了单频段和多频段天线以及带匹配网络的整流电路,以完成成功的整流电路模型。在本章的最后,介绍了一个双频整流天线的示例,并对整流天线的每个部分进行了详细的描述。
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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