Harvesting Wireless Power: Survey of Energy-Harvester Conversion Efficiency in Far-Field, Wireless Power Transfer Systems

无线电源传输 电气工程 动力传输 无线 最大功率转移定理 微波传输 能量收集 工程类 微波食品加热 功率(物理) 电子工程 计算机科学 电信 物理 量子力学
作者
Christopher R. Valenta,Gregory D. Durgin
出处
期刊:IEEE Microwave Magazine [Institute of Electrical and Electronics Engineers]
卷期号:15 (4): 108-120 被引量:734
标识
DOI:10.1109/mmm.2014.2309499
摘要

The idea of wireless power transfer (WPT) has been around since the inception of electricity. In the late 19th century, Nikola Tesla described the freedom to transfer energy between two points without the need for a physical connection to a power source as an "all-surpassing importance to man". A truly wireless device, capable of being remotely powered, not only allows the obvious freedom of movement but also enables devices to be more compact by removing the necessity of a large battery. Applications could leverage this reduction in size and weight to increase the feasibility of concepts such as paper-thin, flexible displays, contact-lens-based augmented reality, and smart dust, among traditional point-to-point power transfer applications. While several methods of wireless power have been introduced since Tesla's work, including near-field magnetic resonance and inductive coupling, laser-based optical power transmission, and far-field RF/microwave energy transmission, only RF/microwave and laser-based systems are truly long-range methods. While optical power transmission certainly has merit, its mechanisms are outside of the scope of this article and will not be discussed.

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