Sub micro radian fine tracking system optimization design

Yansong Song, S. Tong
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引用次数: 1

Abstract

The compound-axis APT servo control system is the important unit and key technology of the system of space laser communication, the fine tracking subsystem is further suppress the vibration residuals of the coarse tracking subsystem, it decides tracking accuracy of the whole servo system. This paper analyzes the impact of fine tracking error factor, and the characteristics of sources of error from the image detection and servo algorithm have been both optimized, We have built an experimental system in the laboratory and carried out experimental tests, In the simulation of satellite vibration condition can realize the tracking precision about 0.8μrad. The successful implementation of the sub-micro-radian dynamic tracking, Technological foundation for free space laser communication systems to achieve long-distance communications.
亚微弧度精细跟踪系统优化设计
复合轴APT伺服控制系统是空间激光通信系统的重要单元和关键技术,精细跟踪子系统进一步抑制了粗跟踪子系统的振动残留,决定了整个伺服系统的跟踪精度。本文分析了影响跟踪精度的误差因素,并从图像检测和伺服算法两方面对误差源的特性进行了优化,在实验室搭建了实验系统并进行了实验测试,在模拟卫星振动条件下可实现约0.8μrad的跟踪精度。成功实现了亚微弧度动态跟踪,为自由空间激光通信系统实现远距离通信奠定了技术基础。
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