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Fault ride through concept in low voltage distributed photovoltaic generators for various dispersion and penetration scenarios

机译:低压分布式光伏发电机中的故障穿越概念,适用于各种分散和渗透情况

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The Distributed Generation expansion and its smooth integration in distribution networks have gained much interest over the last years. Particularly, the photovoltaic systems connected to the low voltage distribution networks, present noteworthy benefits for the energy markets and customers. Meanwhile, aiming to high penetration level, many issues emerge regarding their behavior under grid disturbances. In this paper, the concept of Fault Ride Through Capability (FRTC) is applied to low voltage distributed photovoltaic generators (DG-PV), aiming mostly to the coordinated design and control of their interfacing inverters, so as to successfully address the FRTC requirements. These design alterations are examined in combination with an appropriate control concept that improves the FRT behavior of the DG-PV units. In order to apply the proposed control, an energy storage system is deemed indispensable. Through load flow analysis, the impact of the DG-PV interfaced reactance value X_(DG) is thoroughly investigated for various dispersion and penetration levels scenarios. Therefore, by applying the above control concept, a suitable selection of X_(DG) can be reached, achieving so compliance with FRT limits without leading to extremely inverter overloading (during faults). Finally, it is shown that the wider dispersion of DG-PV units enhances their FRT compatibility.
机译:在过去的几年中,分布式发电的扩展及其在配电网络中的平稳集成引起了人们的极大兴趣。特别是,连接到低压配电网络的光伏系统为能源市场和客户带来了显着的收益。同时,为了达到较高的渗透水平,在电网扰动下其行为出现了许多问题。本文将故障穿越能力(FRTC)的概念应用于低压分布式光伏发电机(DG-PV),其主要目的是协调连接逆变器的设计和控制,从而成功满足FRTC的要求。结合适当的控制概念来检查这些设计变更,以改善DG-PV装置的FRT行为。为了应用建议的控制,能量存储系统被认为是必不可少的。通过潮流分析,针对各种弥散度和渗透水平方案,对DG-PV界面电抗值X_(DG)的影响进行了深入研究。因此,通过应用上述控制概念,可以达到X_(DG)的适当选择,从而达到FRT限制,而不会导致逆变器超载(故障期间)。最后,表明DG-PV单元的分散性增强了它们的FRT兼容性。

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