考虑柔性关节动态误差的卫星天线指向控制

You Bindi, Wen Jianmin, Chen Jun
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引用次数: 1

摘要

卫星天线具有两个自由度的运动和定位特点,可捕捉地面指定区域的信息。动态误差的非线性特性影响指向精度和卫星姿态。首先建立了卫星天线的正、逆动力学模型,然后考虑关节柔性的动力学误差,分析了卫星天线的扰动效应。最后,对设计的天线控制器的动力学参数进行实时计算,可以直接补偿天线关节扰动引起的动态误差。利用李雅普诺夫稳定性理论建立了系统的渐近稳定性。结果表明,即使在较小的振幅下,柔性关节的动态误差也会产生不可预测的振动响应和速度波动。通过合理的控制器参数,控制器算法可以完全补偿动态误差并抑制其扰动,以满足天线指向精度。所得结论具有重要的学术价值和工程意义。
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Pointing control of satellite antenna considering dynamic error of flexible-joint
Satellite antenna hold two degrees of freedom movement and positioning features to capture designated area information on the ground. The nonlinear characteristic of dynamic error impacts on pointing accuracy and satellite attitude. The forward and inverse dynamic model of satellite antenna is established firstly, Secondly, disturbance effects of Satellite Antenna are analyzed considering dynamic error of joint-flexible. Finally, real-time calculation of kinetic parameters of the antenna designed controller can directly compensate for dynamic errors caused by antenna joint disturbance. The asymptotic stability is established using Lyapunov stability theory. The result shows that the presence of dynamic error of flexible-joint can produce an unpredictable vibration response and velocity fluctuations even if the amplitude is small. With reasonable controller parameters, controller algorithm can completely compensate for the dynamic error and suppress its disturbance to satisfy the antenna pointing accuracy. The conclusion would have important academic value and engineering significance.
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