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Optimal Model Approximation of Linear Time-Invariant Systems Using the Enhanced DE Algorithm and Improved MPPA Method

机译:利用增强算法和改进的MPPA方法,最佳模型近似线性时间不变系统

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In this paper, the authors propose a novel model order reduction method integrating evolutionary and conventional approaches for higher-order linear time-invariant single-input-single-output (SISO) and multi-input-multi-output (MIMO) dynamic systems. The proposed method makes use of a differential evolution algorithm with enhanced mutation operation for the determination of reduced order model (ROM) denominator polynomial coefficients. In addition, an improved multi-point Pade approximation method is used to determine the optimal ROM numerator polynomial coefficients. The optimum property of the ROM is measured by minimising the integral square of the step response error between the original high-order dynamic system and the ROM. In the case of the MIMO system reduction approach, an optimal ROM transfer function matrix is determined by minimising a single objective function. This objective function is defined by a linear scalarising of the multi-step error function matrix components mml:mfenced close=")" open="("EijThe proposed method guarantees the preservation of the stability, passivity and accuracy of the original higher-order system in the ROM. The proposed method is validated by applying it to a ninth-order SISO system, as well as to the tenth- and sixth-order linearised single-machine infinite-bus power system model with and without an automatic excitation control system. The simulation results and the comparison of the integral square error and impulse response energy values of the ROM demonstrate the dominance of the proposed method over the latest reduction methods available in the literature.
机译:在本文中,作者提出了一种新颖的模型顺序减少方法,其为高阶线性时间不变单输入单输出(SISO)和多输入多输出(MIMO)动态系统的传统方法集成了进化和传统方法。该方法利用具有增强突变操作的差分演化算法,用于确定减少阶模型(ROM)多项式系数。另外,改进的多点梯形近似方法用于确定最佳ROM分子多项式系数。通过最小化原始高阶动态系统和ROM之间的阶跃响应误差的积分平方来测量ROM的最佳特性。在MIMO系统还原方法的情况下,通过最小化单个目标函数来确定最佳ROM传递函数矩阵。该目标函数由多步误差函数矩阵组件的线性缩放定义MML:MFenced Close =“)”Open =“(”Eij该方法保证了原始高阶的稳定性,传奇和准确性的保存在ROM中的系统。通过将第九级SISO系统应用于第九阶和第六阶线性的单机无线电力电力系统型号,并且没有自动激励控制系统,验证了所提出的方法。仿真结果和集成量误差和脉冲响应能量值的比较展示了在文献中可用的最新减少方法的提出方法的优势。

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