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Research for Diagnosing Electronic Control Fault of Astronomical Telescope's Armature Winding by Step Signal

机译:步进信号诊断天文望远镜电枢绕组电控故障的研究

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This paper puts forward a electronic fault diagnose method focusing on large-diameter astronomical telescope's armature winding, and ascertains if it is the resistance or inductance which is out of order. When it comes to armature winding's electronic fault, give the angular position a step signal, and compare the outputs of five models of normal, larger-resistance, smaller-resistance, larger-inductance and smaller-inductance, so we can position the fault. Firstly, we ascertain the transfer function of the angular position to the armature voltage, to analysis the output of armature voltage when the angular position's input is step signal. Secondly, ascertain the different armature currents' characteristics after armature voltage pass through different armature models. Finally, basing on the characteristics, we design two strategies of resistance and inductance separately. The author use MATLAB/Simulink function to model and emulate with the hardware parameters of the 2.5m-caliber telescope, which China and France developed cooperatively for Russia. Meanwhile, the author add a white noise disturbance to the armature voltage, the result shows its feasibility under a certain sized disturbance.
机译:提出了一种针对大口径天文望远镜电枢绕组的电子故障诊断方法,确定是电阻还是电感不正常。对于电枢绕组的电子故障,给角位置一个阶跃信号,并比较正常,较大电阻,较小电阻,较大电感和较小电感的五个模型的输出,以便我们可以定位故障。首先,我们确定角位置到电枢电压的传递函数,以分析当角位置的输入为步进信号时电枢电压的输出。其次,确定电枢电压通过不同电枢模型后的电枢电流特性。最后,根据特性,分别设计了电阻和电感两种策略。作者使用MATLAB / Simulink函数对2.5m口径望远镜的硬件参数进行建模和仿真,这是中国和法国为俄罗斯共同开发的。同时,作者在电枢电压上增加了白噪声干扰,结果表明在一定大小的干扰下它是可行的。

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