基于二轴转向镜机构的卫星激光通信系统小型化与评价

Y. Aoyanagi, Toshiki Kato, Toshihiko Yasunaka, T. Uematsu, S. Satori
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引用次数: 0

摘要

激光通信系统具有在体积小、功耗低的条件下实现高速传输的优点。由于激光光束的定向特性,激光通信系统对指向控制的精度要求很高。由于微卫星的姿态控制精度,要求微卫星携带的指向装置具有降低指向精度、指向范围宽、体积小、质量好、功耗低等特点。研制了一种新型的以两轴指向控制机构为特点的指向装置。指向控制机构面包板模型由转向镜、角度传感器和电气单元组成。转向镜机构是用杆端轴承完成的。在卫星与地面站间模拟器中对激光通信装置的指向精度和跟踪系统性能进行了评估。本文介绍了指向控制机构面包板模型的开发和性能评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Miniaturization and Evaluation of Laser Communication System for Satellite by 2-Axis Steering Mirror Mechanism
A laser communication system has an advantage of realizing the high speed transmission under the conditions of small size and low electrical power. The laser communication system requires a high accuracy of pointing control because of the directional characteristics of laser beam. Due to the attitude control accuracy of micro-satellites, the pointing device carried in micro-satellite is required to have mitigated pointing accuracy, wide range pointing, small size, mass and low electrical power. We have developed a new pointing device characterized by two-axis pointing control mechanism. Breadboard model of pointing control mechanism consists of steering mirror, angular sensor and electrical unit. The steering mirror mechanism is accomplished using rod-end-bearings. The pointing accuracy and the performance of tracking system of the laser communication device were evaluated in simulator of between satellite and ground station. This paper describes development of the breadboard model of pointing control mechanism and the performance evaluation.
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