Smart current control of the wind energy conversion system based permanent magnet synchronous generator using predictive and hysteresis model

H. Zine, K. Abed, Hamed Kamel, Eddine Zine
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Abstract

Introduction. Given the increasing demand for performance and efficiency of converters and power drives, the development of new control systems must take into account the real nature of these types of systems. Converters and dimmers power are nonlinear systems of a hybrid nature, including elements linear and nonlinear and a finite number of switching devices. Signals input for power converters are discrete signals that control the ‘opening and closing’ transitions of each component. Problem. In the multilevel inverters connected to grid, the switching frequency is the principal cause of harmonics and switching losses, which by nature, reduces the inverter’s efficiency. Purpose. For guarantee the satisfying quality of power transmitted to the electrical grid, while ensuring reduction of current ripples and output voltage harmonics. Novelty. This work proposes a new smart control, based on a predictive current control of the three level neutral point clamped inverter, used in Wind Energy Conversion System (WECS) connected to grid, based permanent magnet synchronous generator, powered by a hysteresis current control for the rectifier. This new formula guarantees handling with the influence of harmonics disturbances (similar current total harmonic distortion), voltage stress, switching losses, rise time, over or undershoot and settling time in WECS. Methods. The basic idea of this control is to choose the best switching state, of the power switches, which ameliorates the quality function, selected from order predictive current control of WECS. Results. Practical value. Several advantages in this intelligent method, such as the fast dynamic answer, the easy implementation of nonlinearities and it requires fewer calculations to choose the best switching state. In addition, an innovative algorithm is proposed to adjust the current ripples and output voltage harmonics of the WECS. The performances of the system were analyzed by simulation using MATLAB/Simulink.
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利用预测和滞后模型对基于永磁同步发电机的风能转换系统进行智能电流控制
导言。鉴于对变流器和电力驱动装置的性能和效率的要求越来越高,开发新的控制系统必须考虑到这些类型系统的实际性质。功率转换器和调光器是混合性质的非线性系统,包括线性和非线性元件以及有限数量的开关设备。电源转换器的输入信号是离散信号,用于控制每个元件的 "打开和关闭 "转换。问题在与电网连接的多电平逆变器中,开关频率是造成谐波和开关损耗的主要原因,从本质上讲,这会降低逆变器的效率。目的保证向电网传输的电能质量令人满意,同时确保减少电流纹波和输出电压谐波。新颖性。本作品提出了一种新的智能控制方法,基于对三电平中性点箝位逆变器的预测电流控制,该逆变器用于与电网连接的风能转换系统(WECS),以永磁同步发电机为基础,由整流器的滞后电流控制提供动力。这一新公式可确保在 WECS 中处理谐波干扰(类似电流总谐波失真)、电压应力、开关损耗、上升时间、过冲或欠冲以及沉淀时间的影响。方法。该控制的基本思想是从 WECS 的阶次预测电流控制中选择能改善质量功能的电源开关的最佳开关状态。结果。实用价值。这种智能方法有几个优点,如快速动态响应、易于实现非线性特性以及选择最佳开关状态所需的计算量较少。此外,还提出了一种创新算法来调整 WECS 的电流纹波和输出电压谐波。使用 MATLAB/Simulink 对系统性能进行了仿真分析。
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