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Internal model-based current control of the RL filter-based voltage-sourced converter

机译:基于RL滤波器的电压源转换器的基于内部模型的电流控制

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Power system operates close to its operational limit to achieve a higher level of utilization of the grid infrastructure. As a result, its transient behavior is of great importance to prevent violation of the operation limits. This paper proposes an internal model control (IMC)-based approach for voltage-sourced converters (VSC) to improve their dynamic behavior. This IMC controller is designed based on a detailed model of the VSC. The proposed control approach has superior performance, i.e., faster step response and less overshoot, and higher axes decoupling than the conventional dq-current control method. The proposed IMC-based controller has a straightforward design procedure, and can be implemented using simple PI and PID controllers. Several case studies are presented to evaluate and compare the transient performance of the IMC-based controller with conventional dq current control subsequent to step changes in the set points of direct and quadrature axes current, single-phase fault, and three-phase fault.
机译:电力系统的运行接近其运行极限,以实现更高水平的电网基础设施利用率。结果,其瞬态行为对于防止违反操作极限非常重要。本文提出了一种基于内部模型控制(IMC)的方法来改善电压源转换器(VSC)的动态性能。该IMC控制器是基于VSC的详细模型设计的。与传统的dq电流控制方法相比,所提出的控制方法具有出色的性能,即更快的阶跃响应和更少的过冲,以及更高的轴解耦能力。所提出的基于IMC的控制器具有简单的设计过程,可以使用简单的PI和PID控制器来实现。提出了几个案例研究,以评估和比较基于IMC的控制器与常规dq电流控制在直流和正交轴电流,单相故障和三相故障的设定值发生阶跃变化之后的瞬态性能。

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