摘要
为了提高卫星天线定向全物理仿真精度,从力学的角度研究了卫星天线定向复合控制全物理仿真系统试验时影响天线指向与定点控制精度的几个不理想因素。对系统的误差进行了分析和研究,得出了其误差模型,在此基础上设计了自适应控制律并对其进行了稳定性证明。最后对该系统进行了仿真和测试,并给出了结果。结果表明该系统可以满足高精度天线定向复合控制要求。为进一步提高卫星天线定向复合控制全物理仿真精度奠定了基础。
To improve the precision of the satellite antenna pointing full-physical simulation, in this paper, on the viewpoint of mechanics, several unideal factors that affected the antenna pointing complex controlling precision were researched when the Satellite Antenna Pointing Complex Controlling Full-Physical Simulation System was tested. And the system error was analyzed and studied. The error model was given too. Then the adaptive controlling law had been designed and its stability had been proved. In the end, the simulation results were given. The simulation results have shown that this system can satisfy the high-precision requirement of Satellite Antenna Pointing Complex Controlling. This work establishes the base of the further improving satellite antenna pointing complex controlling precision.
出处
《宇航学报》
EI
CAS
CSCD
北大核心
2006年第1期126-129,138,共5页
Journal of Astronautics
关键词
全物理仿真
误差模型
稳定性
复合控制
Full-physical simulation
Error model
Stability
Complex controlling