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Parameter estimation of the nonlinear dynamics of a thyristor driven dc-motor experimental set-up using hmf-method

机译:基于hmf方法的晶闸管驱动直流电动机实验装置非线性动力学的参数估计

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The application of the Hartley modulating functions (HMF) method to estimate parameters of a thyristor driven dc-motor laboratory experimental set-up is investigated. The HMF-method is well suited for the parameter estimation of physically-based continuous-time nonlinear systems from their I/O-data records. This recently developed methodology uses a frequency dependent weighted least squares algorithm. The practical implementation of the HMF-method is facilitated byt he computer-aided control system design software CADACS. The inputs of the dc-motor system are set from the personal computer CADACS software through D/A converters and the I/O-responses are displayed on the analog instruments as well as on the PCscreen via A/D converters. Then, the I/O-data are applied to a suitable HMF-algorithm of the dc-motor model to estimate the physically-based system parameters. The practical application of the HMF-method and here obtained good results demonstrate the efficiency of this new approach.
机译:研究了Hartley调制函数(HMF)方法在晶闸管驱动直流电动机实验室实验装置参数估计中的应用。 HMF方法非常适合从其I / O数据记录对基于物理的连续时间非线性系统进行参数估计。这种最近开发的方法使用频率相关的加权最小二乘算法。计算机辅助控制系统设计软件CADACS促进了HMF方法的实际实施。直流电动机系统的输入通过D / A转换器从个人计算机CADACS软件进行设置,并且I / O响应通过A / D转换器显示在模拟仪表以及PC屏幕上。然后,将I / O数据应用于直流电动机模型的合适HMF算法,以估算基于物理的系统参数。 HMF方法的实际应用并在此获得了良好的结果,证明了这种新方法的效率。

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