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Open-loop-based Island-mode Voltage Control Method for Single-phase Grid-tied Inverter with Minimized LC Filter

机译:最小LC滤波器的单相并网逆变器基于开环的孤岛电压控制方法

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This paper proposes an island-mode voltage control method using an open-loop control that applies a high-gain disturbance observer (DOB) for a single-phase inverter with a low-capacitance output filter. The output voltage is distorted with low capacitance obtained from the conventional method that consists of a PID regulator for an automatic voltage regulator and a PI regulator for an automatic current regulator. To compensate for the output voltage distortion, the high-gain DOB for the output voltage is applied for open-loop-based voltage control. DOB is implemented into a field-programmable gate array with high-speed sampling. In the LC filter of a 1-kW prototype, the impedance of the inductor is minimized to 1.0% of the normalized inverter impedance, whereas the admittance of the capacitor is reduced to 0.25% of the normalized inverter admittance. Using the proposed method, the inverter output voltage total harmonic distortion is reduced by 82.4% even with the diode rectifier load compared to conventional voltage control, whereas the constant output voltage is achieved regardless of load conditions.
机译:本文提出了一种使用开环控制的孤岛模式电压控制方法,该方法将高增益干扰观测器(DOB)用于具有低电容输出滤波器的单相逆变器。从常规方法获得的低电容会使输出电压失真,常规方法包括用于自动电压调节器的PID调节器和用于自动电流调节器的PI调节器。为了补偿输出电压失真,将输出电压的高增益DOB应用于基于开环的电压控制。 DOB被实现为具有高速采样的现场可编程门阵列。在1kW原型机的LC滤波器中,电感器的阻抗被最小化到归一化逆变器阻抗的1.0%,而电容器的导纳被降低到归一化逆变器导纳的0.25%。与传统的电压控制相比,使用所提出的方法,即使在二极管整流器负载下,逆变器输出电压总谐波失真也可降低82.4%,而无论负载条件如何,均可实现恒定的输出电压。

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