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A Generalized Droop Control for Grid-Supporting Inverter Based on Comparison Between Traditional Droop Control and Virtual Synchronous Generator Control

机译:基于传统下垂控制和虚拟同步发电机控制的基于比较的网格支撑逆变器的广义下垂控制

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In this paper, a generalized droop control (GDC) is proposed for a grid-supporting inverter based on a comparison between traditional droop control and virtual synchronous generator (VSG) control. Both the traditional droop control and VSG control have their own advantages, but neither traditional droop control nor VSG control can meet the demand for different dynamic characteristics in grid-connected (GC) and stand-alone (SA) modes at the same time. Rather than using a proportional controller with a low-pass filter, as in a traditional droop control, or fully mimicking the conventional synchronous generator parameters in a VSG control, the active power control loop of the GDC can be designed flexibly to adapt to different requirements. With a well-designed controller, the GDC can achieve satisfactory control performance; unlike a traditional droop control, it can provide virtual inertia and damping properties in SA mode; unlike a VSG control, the output active power of an inverter with GDC can follow changing references quickly and accurately, without large overshoot or oscillation in the GC mode. Moreover, given specific controller parameters, the GDC can function as both a traditional droop control and a VSG control. The GDC's controller parameter design is more intuitive and flexible, and this paper provides a distinct design process. Finally, the effectiveness of the proposed control method is validated by the simulation and experimental results.
机译:本文基于传统下垂控制和虚拟同步发电机(VSG)控制的比较,提出了一种广义下垂控制(GDC),用于基于传统下垂控制和虚拟同步发电机(VSG)控制的比较。传统的下垂控制和VSG控制都有自己的优势,但既不是传统的下垂控制,VSG控件都不能满足网格连接(GC)和独立(SA)模式对不同动态特性的需求。而不是使用带有低通滤波器的比例控制器,而是在传统的下垂控制中,或者在VSG控制中完全模仿传统的同步发电机参数,可以灵活设计GDC的有源功率控制环,以适应不同的要求。通过精心设计的控制器,GDC可以实现令人满意的控制性能;与传统的下垂控制不同,它可以在SA模式下提供虚拟惯性和阻尼属性;与VSG控件不同,使用GDC的变频器的输出有效功率可以快速准确地遵循更改的参考,而无需在GC模式下大量的过冲或振荡。此外,给定特定的控制器参数,GDC可以用作传统的下垂控制和VSG控制。 GDC的控制器参数设计更直观且灵活,本文提供了独特的设计过程。最后,通过模拟和实验结果验证了所提出的控制方法的有效性。

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