Simulation and Analysis of Electro Mechanical Actuator with Position Control

Pub Date : 2023-03-13 DOI:10.14429/dsj.73.18284
Rengasamy S, M. D., R. R
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Abstract

In recent times, Electro-Mechanical Actuator (EMA) is widely employed in various aerospace applications because of its compactness, ease of maintenance, and cost efficiency. It attracts most of the researcher for simulation and performance analysis. It is very much important to study its control system behaviour. In general, EMA requires, three loop cascade control, but for aerospace application two loop cascade control is used for speed and position controls due to dynamic load changing requirement. Most research efforts on EMA system has used a transfer function model of all its subsystems. Nevertheless, this technique does not yield complete outcomes for analysing its performance. To analyse its performance and characteristics in dynamic condition, an experimental model is essential. In addition, this model needs to cater for analysing performance of different capacity EMA. The primary goal of this work is to simulate unique EMA model with position control using a practical data and analyse its performance. In this design, EMA is modelled by three-phase Brushless Direct Current (BLDC) motor, six-step commutation logic, a speed sensor (Tacho) and a position sensor using Linear Variable Differential Transformer (LVDT). Position and speed controls are handled by Proportional (P) and Proportional plus Integral (PI) controllers respectively. The process reaction curve method is used to tune the controllers. This tuning approach is adequate to enable accurate and robust speed and position control. This paper focus on the simulation and performance analysis of a practical EMA system with position and speed controls in matlab-simulink. The performance analysis results shows that simulated model characteristic is close to physical system and reliable.
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带位置控制的机电作动器仿真与分析
近年来,机电致动器(EMA)因其结构紧凑、易于维护和成本效益高而广泛应用于各种航空航天应用中。仿真和性能分析吸引了众多研究者的关注。对其控制系统行为的研究具有十分重要的意义。一般情况下,EMA要求三回路串级控制,但在航空航天应用中,由于动态负载变化的要求,速度和位置控制采用两回路串级控制。大多数研究都是用传递函数模型来描述其所有子系统。然而,这种技术并不能产生分析其性能的完整结果。为了分析其在动态条件下的性能和特性,必须建立一个实验模型。此外,该模型还需要适应不同容量EMA的性能分析。本工作的主要目标是利用实际数据模拟具有位置控制的独特EMA模型,并分析其性能。在本设计中,EMA由三相无刷直流(BLDC)电机、六步换相逻辑、速度传感器(Tacho)和使用线性可变差动变压器(LVDT)的位置传感器建模。位置和速度控制分别由比例(P)和比例加积分(PI)控制器处理。采用过程反应曲线法对控制器进行调优。这种调谐方法足以实现准确和稳健的速度和位置控制。本文在matlab-simulink中对一个实际的具有位置和速度控制的机电一体化系统进行了仿真和性能分析。性能分析结果表明,仿真模型的特性接近实际系统,可靠性高。
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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