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Generalized Closed-Loop Control Schemes with Embedded Virtual Impedances for Voltage Source Converters with LC or LCL Filters

机译:具有LC或LCL滤波器的电压源转换器的具有嵌入式虚拟阻抗的通用闭环控制方案

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In this paper, a generalized closed-loop control (GCC) scheme is proposed for voltage source converters (VSCs) with LC or LCL output filters. The proposed GCC scheme has a single-loop control of inverter output (voltage or current) and two parallel virtual impedance terms using additional measurements. The virtual impedance can be the equivalent internal impedance or external impedance (or both), depending on their control term and feedback variable selection. The internal impedance term is mainly responsible for providing desired damping to the filter circuit, and the external virtual impedance term can effectively adjust the converter system closed-loop output impedance. As each term in the GCC scheme can be controlled independently, the proposed GCC scheme has great flexibility and can easily realize and explain the performances of the traditional single- and multiloop control schemes and their different variations. Moreover, the GCC scheme provides a distinct physical meaning of each control term, which makes the control parameter tuning more straightforward and robust. Additionally, as shown in this paper, the proposed GCC scheme can tackle some traditionally challenging control objectives by avoiding the harmonics filtering or derivative terms. Experimental results from laboratory VSC prototypes are obtained to validate the proposed GCC scheme.
机译:本文针对具有LC或LCL输出滤波器的电压源转换器(VSC)提出了一种通用的闭环控制(GCC)方案。提出的GCC方案具有对逆变器输出(电压或电流)的单环控制以及使用附加测量值的两个并联虚拟阻抗项。虚拟阻抗可以是等效的内部阻抗或外部阻抗(或两者),具体取决于它们的控制项和反馈变量选择。内部阻抗项主要负责为滤波器电路提供所需的阻尼,而外部虚拟阻抗项则可以有效地调节转换器系统的闭环输出阻抗。由于GCC方案中的每个术语都可以独立控制,因此所提出的GCC方案具有很大的灵活性,可以轻松实现和解释传统单回路和多回路控制方案的性能及其不同的变化。此外,GCC方案为每个控制项提供了不同的物理含义,这使控制参数的调整更加直接和可靠。此外,如本文所示,提出的GCC方案可以避免谐波滤波或微分项,从而可以解决一些传统上具有挑战性的控制目标。从实验室VSC原型获得的实验结果可以验证所提出的GCC方案。

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