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A calculation method of braking torque for eddy current dynamometer using least square method based on assumption of cylindrical ring

机译:基于圆柱环假设的最小二乘涡流测功机制动力矩计算方法

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For engineering applications, the existing method of calculating the braking torque is more complex. Furthermore, the calculation method depends on the internal structure parameters which are often difficult to obtain. Hence, the calculational method of braking torque using least square method based on assumption of cylindrical ring (CR-LS) is proposed in this paper. Referring to calculation methods of eddy current braking devices, The CR-LS assumes that the eddy current is distributed as a cylindrical ring with the same width as the tooth tip of the inductor. Eddy current values are worked out by conversion coefficient. With the employ of LS, unknown internal structure parameters of dynamometer in formula are fitted. It makes the formula use in industrial control with easy. By experimental verification, the formula obtained by CR-LS was simple and available, and calculation results had minor errors in contrast with output values of actual system. Therefore CR-LS can be applied in actual engineering calculations of dynamometer.
机译:对于工程应用,现有的计算制动扭矩的方法更加复杂。此外,计算方法取决于通常难以获得的内部结构参数。因此,本文提出了基于圆柱环(CR-LS)假设的最小二乘法制动力矩的计算方法。参考涡流制动装置的计算方法,CR-LS假定涡流分布为圆柱环,其宽度与感应器的齿顶相同。涡电流值通过转换系数算出。利用LS,拟合了测力计未知的内部结构参数。它使该配方易于在工业控制中使用。经过实验验证,CR-LS公式简单易用,与实际系统的输出值相比,计算结果误差较小。因此,CR-LS可以应用于测力计的实际工程计算中。

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