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An Exact Feedback Linearization Control of a SMES System to Support Power in Electrical Grids

机译:支持电网电力的SMES系统的精确反馈线性化控制

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This paper presents an exact feedback linearization control strategy to operate superconducting magnetic energy storage (SMES) systems connected to an electric distribution network through a pulse-width-modulated current source converter (PWM-CSC). To model this system an average model is employed by using dq reference frame. The dynamical model of the SMES system considering the PWM-CSC is transformed algebraically into an equivalent linear model by simple substitutions, avoiding to use an equivalent linearization technique or Taylor's series. The linear model preserves all features of the nonlinear model, which allows obtaining control laws to be applicable in its non- linear system. The proposed control scheme permits the active and reactive control of the SMES system in a wide range of operating independently. The effectiveness and the robustness of the proposed control methodology are tested in a low-voltage distribution network considering unbalance and high harmonic distortion in the voltage provided by the utility. All simulation cases are carried out in MATLAB/ODE environment under time domain reference frame, and they are compared with a conventional PI controller.
机译:本文提出了一种精确的反馈线性化控制策略,以操作通过脉宽调制电流源转换器(PWM-CSC)连接到配电网络的超导磁储能(SMES)系统。为了对该系统建模,通过使用dq参考系采用平均模型。通过简单替换将考虑PWM-CSC的SMES系统动力学模型代数转换为等效线性模型,避免使用等效线性化技术或泰勒级数。线性模型保留了非线性模型的所有特征,这使得获得控制律可适用于其非线性系统。所提出的控制方案允许在广泛的独立运行中对SMES系统进行主动和被动控制。考虑到公用事业公司提供的电压中的不平衡和高谐波失真,在低压配电网中测试了所提出的控制方法的有效性和鲁棒性。所有仿真案例均在时域参考框架下的MATLAB / ODE环境中进行,并与常规PI控制器进行了比较。

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