无线激光功率传输:最新进展与未来挑战

Yifan Zheng , Guodong Zhang , Zhenghao Huan , Yang Zhang , Guangfu Yuan , Qingyuan Li , Guoyu Ding , Zhaochen Lv , Wang Ni , Yuchuan Shao , Xingjiang Liu , Jifeng Zu
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引用次数: 0

摘要

激光电力传输(LPT)技术近年来备受关注,因为它有可能以更高效、安全和环保的方式彻底改变能源传输方式。与传统的有线电力传输相比,激光电力传输技术具有非接触式传输、高效率和更高安全性等特点。这项技术有望大幅提高能源传输效率,减少能源损耗,并将环境污染降至最低。此外,LPT 还能为移动设备、机器人和航空航天飞行器提供无线供电,从而提高设备的可靠性和使用寿命。因此,这项新兴技术将彻底改变电力传输和利用方式,为能源行业的未来发展带来重大进展。在本综述中,我们将简要介绍 LPT 系统。然后,我们分别介绍每个模块的发展历史和现状。随后,我们将介绍 LPT 系统在太空和水下应用中的扩展。最后,我们讨论了实现高效 LPT 系统所面临的挑战,并对未来的机遇和研究方向提出了自己的看法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wireless laser power transmission: Recent progress and future challenges

Laser power transmission (LPT) technology has gained significant attention in recent years due to its potential to revolutionize energy transfer in a more efficient, safe, and eco-friendly manner. Compared to traditional wired power transmission, LPT offers contactless transmission, high efficiency, and enhanced safety. This technology has the potential to significantly improve energy transmission efficiency, reduce energy loss, and minimize environmental pollution. Additionally, LPT can provide wireless power supply to mobile devices, robots, and aerospace vehicles, which can enhance device reliability and lifespan. Herein, this emerging technology could revolutionize how power is transmitted and utilized, ushering in major progress for the energy sector going forward. In this review, we provide a brief introduction to the LPT system. Then we present the development history and current status of each module separately. Following that, we introduce the expansion of the LPT system in space and underwater applications. Finally, we discuss the challenge of realizing a highly efficient LPT system and offer our perspectives on future opportunities and study directions.

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