Design of intra-cabin laser wireless power transmission system for spacecraft

Xiujun Huang, Dele Shi, Hongyan Xu, Lei Zhao, Hao Zhan, Shihan Zhang, Chong Wang
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Abstract

Laser wireless power transmission (LWPT) technology is an innovative approach for long-distance energy transfer via laser beams, demonstrating significant application potential in space solar power stations, lunar research base energy supply, and deep-space probe power systems. However, current domestic research remains at the ground-testing stage, lacking actual space-environment verification, while facing multiple challenges in complex space environment adaptability and optoelectronic device reliability. This paper addresses these issues by conducting preliminary design work on an intra-cabin LWPT system. Through establishing a 3D design model, we focus on mechanical resistance simulation analysis to evaluate structural stability under various load conditions. The results indicate that the proposed system exhibits excellent mechanical performance and feasibility, providing critical references for subsequent space-environment experimental validation.
航天器舱内激光无线电力传输系统设计
激光无线电力传输技术是一种利用激光束实现远距离能量传输的创新方法,在空间太阳能电站、月球研究基地能源供应、深空探测电力系统等方面具有重要的应用潜力。然而,目前国内的研究还停留在地面试验阶段,缺乏实际的空间环境验证,在复杂空间环境适应性和光电器件可靠性方面面临多重挑战。本文通过对舱内LWPT系统进行初步设计工作来解决这些问题。通过建立三维设计模型,重点进行机械阻力仿真分析,评价结构在各种荷载条件下的稳定性。结果表明,该系统具有良好的力学性能和可行性,为后续空间环境实验验证提供了重要参考。
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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