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Design of State-Feedback Controller for a Single-Phase Grid- Connected Siwakoti-H Inverter with LCL filter

机译:具有LCL滤波器的单相并网Siwakoti-H逆变器的状态反馈控制器设计

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Grid-tied transformerless inverters for photovoltaic (PV) systems have attained a prominent share in the distributed power generation applications on both the domestic and utility scale. This arises the need of a transformerless inverter with less hardware components and complexity. This paper presents a state-feedback current controller (SFCC) for a flying-capacitor based transformerless inverter (Siwakoti-H topology). Compared to the conventional proportional-integral (PI) based control, the state-feedback current control provides a better dynamic performance for a single-phase grid-tied converter equipped with an LCL filter. The controller is designed using pole placement to set the dominant behavior of the converter, which actively damps the resonant frequency of the LCL filter. The controller is extended using dc voltage feedforward compensation (DVFC) to maintain the voltage ripple of the flying capacitor within the limits, and an integral state for improved disturbance rejection. Simulation results illustrate the steady-state and dynamic performance of the controller as well as the inherent damping of the LCL filter resonance. Experimental results are presented to verify the steady-state operation of the system.
机译:光伏(PV)系统的并网无变压器逆变器在家庭和公用事业规模的分布式发电应用中均占有突出的份额。这就需要具有更少硬件组件和复​​杂性的无变压器逆变器。本文提出了一种用于基于飞电容的无变压器逆变器(Siwakoti-H拓扑)的状态反馈电流控制器(SFCC)。与基于常规比例积分(PI)的控制相比,状态反馈电流控制为配备LCL滤波器的单相并网转换器提供了更好的动态性能。控制器的设计采用极点布置来设置转换器的主要性能,从而有效抑制LCL滤波器的谐振频率。控制器使用直流电压前馈补偿(DVFC)进行扩展,以将飞跨电容器的电压纹波保持在限值范围内,并采用积分状态以改善抗干扰能力。仿真结果说明了控制器的稳态和动态性能以及LCL滤波器谐振的固有阻尼。实验结果被提出来验证系统的稳态运行。

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