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Workshop 2: The 5th international workshop on RFID security and cryptography (RISC'13)

机译:研讨会2:第5次国际RFID安全和加密研讨会(RISC'13)

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The application of an LQG controller in antenna servo system is presented in this work, using Nanshan 25-m antenna of Xinjiang Astronomical Observatory. A linear quadratic optimal controller is designed, based on establishing controlled object model and according to the quadratic performance index. Meanwhile, taking into account the actual situation of the antenna work, the Gaussian noise signal is added to simulate the actual interference signal. Then a Kalman filter is designed for the noise. A traditional PI (Proportional and Integral) controller is joined in order to further improve control performance. The good simulation results are obtained by repeatedly optimizing the controller. The results indicate that the designed LQG controller achieves desired results in control performance (such as settling time and overshoot) and has good disturbance performance. Besides, the system is relatively stable.
机译:在这项工作中,使用新疆天文天文台的南山25-M天线,在天线伺服系统中应用LQG控制器在天线伺服系统中的应用。基于建立受控对象模型和根据二次性能指数,设计了线性二次最佳控制器。同时,考虑到天线工作的实际情况,添加了高斯噪声信号以模拟实际干扰信号。然后设计卡尔曼滤波器用于噪音。加入了传统的PI(比例和积分)控制器,以进一步提高控制性能。通过反复优化控制器获得良好的仿真结果。结果表明,设计的LQG控制器实现了控制性能所需的结果(例如稳定时间和过冲)并具有良好的干扰性能。此外,系统相对稳定。

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