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Stability of Photovoltaic and Wind Turbine Grid-Connected Inverters for a Large Set of Grid Impedance Values

机译:光伏和风电并网逆变器对大量电网阻抗值的稳定性

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The aim of this paper is to analyze the stability problems of grid connected inverters used in distributed generation. Complex controllers (e.g., multiple rotating dq-frames or resonant-based) are often required to compensate low frequency grid voltage background distortion and an LCL-filter is usually adopted for the high frequency one. The possible wide range of grid impedance values (distributed generation is suited for remote areas with radial distribution plants) challenge the stability and the effectiveness of the LCL-filter-based current controlled system. It has been found out and it will be demonstrated in this paper that the use of active damping helps to stabilise the system in respect to many different kinds of resonances. The use of active damping results in an easy plug-in feature of the generation system in a vast range of grid conditions and in a more flexible operation of the overall system able to manage sudden grid changes. In the paper, a vast measurement campaign made on a single-phase system and on a three-phase system used as scale prototypes for photovoltaic and wind turbines, respectively, validate the analysis.
机译:本文的目的是分析用于分布式发电的并网逆变器的稳定性问题。通常需要复杂的控制器(例如,多个旋转的dq帧或基于谐振的)来补偿低频电网电压背景失真,并且高频控制器通常采用LCL滤波器。电网阻抗值的可能范围很广(分布式发电适用于带有放射状配电设备的偏远地区),这对基于LCL滤波器的电流控制系统的稳定性和有效性提出了挑战。已经发现并且将在本文中证明,主动阻尼的使用有助于使系统在许多不同种类的共振方面保持稳定。主动阻尼的使用可在各种电网条件下简化发电系统的插入功能,并使整个系统能够更灵活地操作,以应对突然的电网变化。在本文中,针对分别用作光伏和风力涡轮机的比例原型的单相系统和三相系统进行的大规模测量活动验证了该分析。

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