An Adaptive Fuzzy Passivity-based Control Strategy for Grid-Tied Packed E-Cell Converter

M. Mehrasa, M. Babaie, M. Sharifzadeh, S. Bacha, K. Al-haddad
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引用次数: 1

Abstract

In this paper, an adaptive fuzzy passivity-based control strategy is proposed to provide stable operation for a grid-tied nine-level packed E-Cell (PEC9) converter. Passivity theory is developed in the first step to enable the error dynamics of the PEC9 converter currents to reach a much more effective convergence rate using the proposed damping coefficients. Moreover, various operating margins are achieved for the damping coefficients through PEC9 current errors-based 3D curves. In order to establish online estimation for the damping coefficients, the fuzzy controller and Artificial Neural Network (ANN) are combined. Experimental and simulation results are employed to validate the accuracy of the proposed control technique under load variation, parameter mismatch and DC-link voltage variation.
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并网填料电池变换器的自适应模糊无源控制策略
本文提出了一种基于自适应模糊无源控制的并网九电平电池变换器稳定运行控制策略。在第一步中,开发了无源理论,使PEC9变换器电流的误差动态能够使用所提出的阻尼系数达到更有效的收敛速率。此外,通过基于PEC9电流误差的三维曲线,可以获得阻尼系数的各种操作范围。为了建立阻尼系数的在线估计,将模糊控制器与人工神经网络(ANN)相结合。实验和仿真结果验证了所提控制技术在负荷变化、参数失配和直流链路电压变化情况下的准确性。
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