MATH MODEL OF A DIRECT CURRENT MOTOR FOR STEERING ACTUATOR OF A LIQUID-PROPELLANT ENGINE

O. Belonogov, Ivan V. Ronzhin
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引用次数: 0

Abstract

The paper presents the results of development of a math model for a direct current motor of a liquid-propellant engine steering actuator In accordance with the electrical machine theory, the math model of the motor uses a single electromagnetic coefficient. It is shown that the motor math model accuracy can be improved through the use, instead of a single electromagnetic coefficient, of two different coefficients of the math model: Electromechanical velocity coupling coefficient and torque curve coefficient. Elaborated and proposed are methods for identifying parameters of a math model of a dc motor that has natural and artificial static characteristics, which include determining its experimental static characteristics, calculating the values of static characteristics parameters using the linear regression method and calculating the values of the electric motor math model parameters using the proposed formulas. Key words: direct current electric motor, math model, parameter identification method.
液体推进剂发动机转向作动器直流电机数学模型
本文介绍了液体推进剂发动机转向作动器直流电机数学模型的建立结果。根据电机理论,该电机数学模型采用单一电磁系数。结果表明,采用机电速度耦合系数和转矩曲线系数这两个不同的数学模型系数,而不是单一的电磁系数,可以提高电机数学模型的精度。阐述并提出了具有自然静态特性和人工静态特性的直流电机数学模型参数辨识方法,包括确定其实验静态特性、用线性回归法计算静态特性参数值和用所提公式计算电机数学模型参数值。关键词:直流电机,数学模型,参数辨识方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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