Interpolation synthesis of thecontrollers for a multi-motorelectric drive system containingan elastically linked element

IF 0.4 Q4 ENGINEERING, MULTIDISCIPLINARY
D. Nguyen Phu, Tuan Vu Duc, Vijender Kumar Solanki, Cong Lam Sinh, Duc-Tan Tran
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引用次数: 0

Abstract

Partial differential equations, integral, differential, or other equations describe multi-motor automatic electric drive systems containing elastic conveyor belts. Because of the elastic and distributive nature of the system parameters, the transfer function describing them is often a complex expression, containing not only the arguments as a linear system but also the inertial and transcendental components. This makes the precise control of tension and speed synchronously much more complicated than the centralized parameter system. A promising numerical solution based on the real interpolation method will simplify the procedure for synthesizing control loops while preserving the characteristic properties of objects with distributed parameters. The objective of the study is to propose a feasible solution for synthesizing the regulators based on the real interpolation method; it allows direct operation with the original transfer function containing the inertial and transcendental components. In this paper, we proposed an approach to synthesize the control system for objects with distributed parameters using the real interpolation method to reduce computational capacity and synthesis error while preserving the properties of this object class. Building an experimental model of the two-motor electric drive system containing an elastic conveyor to verify the effectiveness of the proposed algorithm. The simulation and experimental results indicate that the control system with the received regulators operating stably and meets the required quality criteria. It proves the efficiency of the synthesis algorithm based on the real interpolation method.
含弹性连杆元件的多电驱动系统控制器的插补综合
偏微分方程、积分方程、微分方程或其他方程描述了包含弹性传送带的多电机自动电力驱动系统。由于系统参数的弹性和分布性质,描述它们的传递函数通常是一个复杂的表达式,不仅包含作为线性系统的参数,还包含惯性和超越分量。这使得张力和速度的精确同步控制比集中式参数系统复杂得多。一种基于实数插值法的数值解将简化控制回路的合成过程,同时保留分布参数对象的特征特性。研究的目的是提出一种可行的基于实插值法合成调节器的解决方案;它允许与包含惯性和超越分量的原始传递函数直接操作。本文提出了一种利用实数插值法对具有分布参数对象的控制系统进行综合的方法,在保持该对象类特性的同时减少了计算量和综合误差。建立了含弹性输送机的双电机电驱动系统的实验模型,验证了该算法的有效性。仿真和实验结果表明,所接收的调节器控制系统运行稳定,满足要求的质量标准。验证了基于实数插值法的综合算法的有效性。
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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来源期刊
Ingenieria Solidaria
Ingenieria Solidaria ENGINEERING, MULTIDISCIPLINARY-
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