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Digital Control of a Shunt Hybrid Power Filter Adopting a Nonlinear Control Approach

机译:采用非线性控制方法的并联混合电力滤波器的数字控制

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This paper proposes a nonlinear derivative-less control approach for controlling a three-phase shunt hybrid power filter (SHPF). The dynamic model of the SHPF system is first elaborated in the stationary frame and then transformed into a “dq” reference frame. The control system is divided into two separate loops, namely the two current dynamics inner loop and the dc voltage dynamic outer loop. The exact feedback linearization technique is used to decouple the inner loop variables. Proportional-integral controllers are utilized to control the SHPF input currents and dc-bus voltage. The proposed nonlinear control is first simulated and then validated on a 2.5-kVA laboratory prototype supported by the DS 1104 digital real-time controller board of dSPACE. Satisfactory results, such as low-ac-current total harmonic distortion, fast step response, and high robustness under load variation, are obtained. Significantly high correlation between the experimental results and the theoretical model, implemented with SIMULINK/Matlab, is obtained.
机译:本文提出了一种用于控制三相并联混合功率滤波器(SHPF)的非线性无导数控制方法。 SHPF系统的动态模型首先在固定框架中进行阐述,然后转换为“ dq”参考框架。控制系统分为两个单独的回路,即两个电流动态内部回路和dc电压动态外部回路。精确的反馈线性化技术用于解耦内部回路变量。比例积分控制器用于控制SHPF输入电流和直流总线电压。首先对提出的非线性控制进行仿真,然后在2.5kVA实验室原型上进行验证,该原型由dSPACE的DS 1104数字实时控制器板支持。获得了令人满意的结果,例如低交流电流总谐波失真,快速阶跃响应以及负载变化下的高鲁棒性。使用SIMULINK / Matlab实现的实验结果与理论模型之间具有显着的高度相关性。

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