Lead compensator design for DC motor driven electromechanical fin actuator

Pavle Adamović, Zlatko Petronijević, N. Jovicic, Aleksandar Z. Stefanović, M. Pavić
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Abstract

This paper presents modeling, simulations and control of the ground-to-air missile fin actuation system, where brushed DC motors are used as actuators, which are driven using voltage regulation-Pulse Width Modulation (PWM). The mathematical model of the system was determined using the differential equations of behavior of the lowest order that was experimentally confirmed. This model was taken as a starting point in the synthesis of the Lead compensator, used to regulate the position of the missile's control surfaces. The trial and error method was used for the synthesis of Lead compensator, taking care to meet the required characteristics of the System, in form of bandwidth and gain. The improved transient process and behavior of the System have also been experimentally confirmed.
直流电机驱动机电鳍形执行器的引线补偿器设计
本文介绍了地空导弹鳍形作动系统的建模、仿真和控制,该系统采用有刷直流电机作为作动器,采用电压调节-脉宽调制(PWM)驱动。利用实验证实的最低阶行为微分方程确定了系统的数学模型。以该模型为起点,合成了用于调节导弹控制面位置的先导补偿器。采用试错法合成引线补偿器,注意满足系统对带宽和增益的要求。改进后的系统瞬态过程和性能也得到了实验证实。
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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