Identification of ship equipment processes by methods of introspective analysis

V. Dorovskoy, V. A. Kucherenko, E. G. Zinchenko, K. Chernobai
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Abstract

For introspective identification of the automatic control system (ACS) of a DC motor there has been developed a specific simplified technique of studying the optimization of a linear automatic control system. The technique is based on using the MATLAB computer simulation program, which helps to easily obtain the transition function of the ACS model, on the understanding a few ACS properties and using the directed search method. The work can be done in three stages, in accordance with the tasks. Draft models are considered, in which the researcher must set up the parameters of the elements, activate the simulation process and keeping under control the type of the transient function select the values of the optimal gains of the controllers. The time constant of the PI controller is chosen equal to the largest time constant of the ACS loop elements. It is often the time constant of the control object. In this case it is the time constant of a DC motor. The optimal choice of the system will also determine the tasks of identification, due to which it will be possible to correctly select a technological object by a specific ACS, its control variable and disturbance to provide the solution of the problem facing ACS. The static characteristics of an object determine the dependence of the controlled variable on the controlling variable and disturbances. In simple cases they can be obtained analytically by using the physical laws that link the controlled variable to the input parameters. Parametric optimization of indicators has been identified and tested on simulation examples in a simulation package and makes it possible to judge the correctness of simulation with a minimum error value.
用内省分析方法识别船舶设备过程
针对直流电动机自动控制系统的内省辨识问题,提出了一种研究线性自动控制系统优化的特定简化方法。该技术是基于使用MATLAB计算机仿真程序,在了解ACS的一些特性并采用有向搜索方法的基础上,方便地获得ACS模型的过渡函数。这项工作可以根据任务分三个阶段进行。在考虑草稿模型的情况下,研究人员必须建立元件的参数,启动仿真过程,控制瞬态函数的类型,选择控制器的最优增益值。PI控制器的时间常数选择等于ACS回路元件的最大时间常数。它通常是控制对象的时间常数。在这种情况下,它是直流电机的时间常数。系统的最优选择也将决定识别的任务,因此可以通过特定的ACS,其控制变量和干扰来正确选择技术对象,从而为ACS面临的问题提供解决方案。对象的静态特性决定了被控变量对控制变量和干扰的依赖性。在简单的情况下,它们可以通过使用将被控制变量与输入参数联系起来的物理定律来解析地获得。在仿真包中对指标的参数优化进行了识别和仿真样例测试,使得以最小误差值判断仿真的正确性成为可能。
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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