The new tracking control system for Free-Space Optical Communications

T. Yamashita, M. Morita, M. Shimizu, D. Eto, K. Shiratama, S. Murata
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引用次数: 30

Abstract

The new tracking control system has been developed for Free-Space Optical Communications. It consists of the agile two-axis gimbals, the high performance fine-pointing-mechanism, the optical coarse acquisition sensor, and the optical fine tracking sensor. In the conventional tracking control systems, the two-axis gimbals is combined with the narrow range actuator for the fine pointing control, and it have the role of the coarse pointing control based on the GPS position and the body attitude. The each motion of the tracking mechanisms, therefore, is mutually disturbed by the individual control algorithms, and the obtained tracking accuracy is restricted by each motion. To improve the control performance of this two-stage type, the synchronized tracking-control system is proposed. The features of the system are the cooperative/predictive control using the each control/detective signals, and the improvement of the performance for disturbances, with the hollow-structured and rapid two-axis mirror gimbals. This control scheme is applied for the developed tracking control system, and makes it possible to achieve Free-Space Optical Communications. The paper shows the system configuration, the control algorithms and strategy for Free-Space Optical Communications, and the effect of the proposed control system by the several test results.1
新型自由空间光通信跟踪控制系统
针对自由空间光通信,研制了一种新的跟踪控制系统。该系统由灵活的两轴框架、高性能精细定位机构、光学粗采集传感器和光学精细跟踪传感器组成。在传统的跟踪控制系统中,两轴万向节与窄量程作动器相结合进行精细指向控制,同时具有基于GPS位置和人体姿态的粗指向控制作用。因此,跟踪机构的各个运动受到各个控制算法的相互干扰,所获得的跟踪精度受到各个运动的限制。为了提高两级型的控制性能,提出了同步跟踪控制系统。该系统的特点是利用各控制/检测信号进行协同/预测控制,并采用空心结构和快速两轴反射框架,提高了系统的抗干扰性能。该控制方案应用于研制的跟踪控制系统,使自由空间光通信成为可能。本文通过多次测试结果,说明了自由空间光通信的系统结构、控制算法和控制策略,以及所提出的控制系统的效果
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