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A new nonlinearity-compensation-based multiple-loops control scheme applied to a three-phase series active power filter for voltage harmonic cancellation

机译:一种新的基于非线性补偿的多环控制方案,应用于三相串联有源电力滤波器,用于消除电压谐波

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Power electronic loads exhibit voltage and current harmonics into the utility system. Active power filters, which are classified into shunt and series ones, have been developed in order to reduce these harmonics and to preserve an acceptable power quality at the mains. This paper presents a detailed study of a series active power filter. First, a low-frequency mathematical model of the series active filter is presented. Then, it is on the basis of this model that a suitable multiple-loops control scheme is designed in order to ensure to the system good performance in term of power quality. The development of the control law is based on the use of the input/output feedback linearisation theory. This approach allows the compensation of the nonlinearities that appear in the model. Simulation results are finally shown and discussed in an attempt to validate the effectiveness of the proposed control scheme.
机译:电力电子负载将电压和电流谐波显示到公用系统中。为了减少这些谐波并保持主电源的可接受的电能质量,已经开发了分为并联和串联有源滤波器的有源滤波器。本文对串联式有源电力滤波器进行了详细研究。首先,给出了串联有源滤波器的低频数学模型。然后,在该模型的基础上,设计了合适的多回路控制方案,以确保系统在电能质量方面的良好性能。控制律的发展是基于输入/输出反馈线性化理论的使用。这种方法可以补偿模型中出现的非线性。最后显示并讨论了仿真结果,以试图验证所提出的控制方案的有效性。

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