Singular Perturbation Method Applied for BVP, IVP and Optimal Control to One Parameter Armature Controlled DC Servo Motor

Kishor Babu Gunti, Sree Krishnarayalu Movva
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引用次数: 0

Abstract

DC servo motor discrete model of one-parameter Singular Perturbation Method (SPM) is enlarged showing zero-order, first-order and second-order approximations. In this paper, a one parameter SPM based two time scale model is considered for evaluation. Now by applying this SPM a real time Boundary Value Problems (BVP), Initial Value Problem (IVP) and Optimal Control Problem (OCP) are premeditated. Such evaluated SPM have a boundary layer correction (BLC) solution and an outer series solution. To improve degenerate solution and to recover initial and boundary conditions a BLC solution of SPM is used. The DC servo-motor control model of second order approximation is carried out for BVP, IVP and OCP. The results thus obtained are presented in comparison to the precise solution. The efficacy of the present model is evaluated in MATLAB environment.
奇异摄动法在单参数电枢控制直流伺服电机BVP、IVP及最优控制中的应用
对单参数奇异摄动法(SPM)的直流伺服电机离散模型进行了放大,得到了零阶、一阶和二阶近似。本文考虑一种基于单参数SPM的双时间尺度模型进行评价。现在,应用该SPM方法可以预先考虑实时边值问题(BVP)、初值问题(IVP)和最优控制问题(OCP)。计算得到的SPM具有边界层校正解和外序列解。为了改进退化解并恢复初始条件和边界条件,采用了SPM的BLC解。建立了直流伺服电机对BVP、IVP和OCP的二阶逼近控制模型。并将所得结果与精确解作了比较。在MATLAB环境下对该模型的有效性进行了评价。
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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