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A Comprehensive Approach for Control of Grid-Connected Quasi-Z-Source Cascaded Multilevel Inverters

机译:并网准Z源级联多电平逆变器的综合控制方法

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In this paper, a new control method for quasi-Z-source cascaded multilevel inverter (CMI) based grid-connected photovoltaic (PV) system using evolutionary algorithm and artificial neural network (ANN) is proposed. The proposed method is capable of boosting the PV array voltage to a higher level and solves the imbalance problem of DC-link voltage in traditional cascaded H-bridge inverters using ANN. The proposed control system adjusts the grid injected current in phase with the grid voltage and achieves independent maximum power point tracking (MPPT) for the separate PV arrays by proportional-integral (PI) controllers. For achieving the best performance, this paper presents an optimum approach to design the controller parameters using particle swarm optimization (PSO). The primary design goal is obtaining good response by minimizing the integral absolute error. Also, the transient response is guaranteed by minimizing the overshoot, settling time and rise time of the system response. The effectiveness of the new proposed control method has been verified through simulation studies in a seven level quasi-Z-source cascaded multilevel inverter.
机译:提出了一种基于进化算法和人工神经网络的准Z源级联多电平逆变器(CMI)并网光伏系统的控制方法。所提出的方法能够将光伏阵列电压提升到更高的水平,并解决了使用ANN的传统级联H桥逆变器中直流母线电压的不平衡问题。所提出的控制系统通过与电网电压同相来调整电网注入电流,并通过比例积分(PI)控制器为独立的光伏阵列实现独立的最大功率点跟踪(MPPT)。为了获得最佳性能,本文提出了使用粒子群优化(PSO)设计控制器参数的最佳方法。主要设计目标是通过使积分绝对误差最小化来获得良好的响应。同样,通过使系统响应的过冲,建立时间和上升时间最小化,可以保证瞬态响应。通过在七级准Z源级联多电平逆变器中进行仿真研究,已验证了所提出的新控制方法的有效性。

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