TDRS单址天线指向控制系统设计

Jinpeng Yuan, Di Yang, Xiaosong Sun
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引用次数: 5

摘要

卫星跟踪与数据中继系统(TDRSS)是近年来航天工程发展的热点之一。为保证跟踪与数据中继卫星与用户卫星之间的通信,设计高指向精度的SA指向控制系统是一项具有挑战性的任务。本文对SA指向控制系统进行了详细的设计。首先利用拉格朗日方程建立了TDRS的动力学模型。其次,对TDRS卫星主体和单接入天线的控制方案进行了选择。推导了TDRS跟踪用户卫星时的跟踪规律,并根据跟踪规律推导出了天线的方位角和仰角。第三,阐述了天线指向控制的概念,设计了机载自主控制方法。机载自主控制方案由采集和自动跟踪两种模式组成。一方面对天线的采集过程进行了设计。另一方面,正确选择自动跟踪模式的天线步进逻辑。采用两相永磁步进电机驱动SA天线,建立了步进电机的数学模型。最后,根据推导出的跟踪规律,以用户卫星和地面站为跟踪对象,对本文设计的天线指向控制系统进行了数学仿真,通过仿真结果分析验证了TDRS的SA天线指向性能
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Single access antenna pointing control system design of TDRS
Tracking and data relay satellite system (TDRSS) is one of the hot spots in the development of the aerospace engineering recently. It is a challenging task to design the SA pointing control system with high pointing accuracy to ensure the communication between the tracking and data relay satellite (TDRS) and the user satellites. The SA pointing control system is designed in this paper in detail. Firstly the dynamic model of the TDRS is established using the Lagrange equation. Secondly the control scheme of the TDRS satellite is selected for the main body and the single access antennae. The tracking laws are derived and the antenna's azimuth and elevation angles can be derived by the tracking laws when the TDRS is tracking the user satellites. Thirdly the antenna pointing control concepts are described, and the on-board autonomous control method is designed. The on-board autonomous control scheme is composed of acquisition and autotrack modes. On one hand the acquisition process of the SA antenna is designed. On the other hand, the antenna step logic of the autotrack mode is properly selected. The SA antenna is driven by two-phase permanent magnetic stepper motor, and the mathematical model of the stepper motor is established. Finally, the mathematic simulation of the antenna pointing control system designed in this paper is conducted in the case of taking the user satellite and the ground station as tracking objects according to tracking laws derived before, and the SA antenna pointing performance of the TDRS is demonstrated by the analysis of the simulation results
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