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Flexible Control Strategy for Enhancing Power Injection Capability of Three-Phase Four-Wire Inverter During Asymmetrical Grid Faults

机译:在不对称电网故障期间提高三相四线逆变器功率注射能力的灵活控制策略

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摘要

A three-phase four-wire inverter is highly suitable for low-voltage distributed grids owing to its zero sequence control; however, essential aspects of grid-following inverters during faults, such as the power oscillation control flexibility and power injection capability, are rarely discussed in detail. Thus, by introducing zero sequence instantaneous power into a four-wire system, this article proposes a flexible control strategy that enhances the power injection capability of the inverter in the photovoltaic generation system during asymmetrical grid faults. First, a generalized reference current generation with flexible control of positive, negative, zero sequence current (FPNZSC), and power oscillations is presented. Second, a maximum allowable power injection (MAPI) algorithm based on the actual value constraints of power oscillations and peak current is presented according to the requirement. The proposed MAPI-FPNZSC strategy further extends the existing fault ride through methods in three-wire inverter systems, which is also suitable for single line-to-ground and double line-to-ground faults and can be easily realized in the natural or stationary frame. The effectiveness of the proposed strategy is verified by comparing the provided three typical objectives with the traditional method, and tested in a real-time hardware-in-the loop experimental platform.
机译:由于其零序控制,三相四线逆变器非常适合低压分布式网格;然而,很少详细讨论诸如电力振荡控制柔性和功率注射能力之类的故障期间的网格之后的逆变器的基本方面。因此,通过将零序瞬时功率引入四线系,本文提出了一种灵活的控制策略,其在不对称的网格故障期间增强了光伏发电系统中的逆变器的功率注射能力。首先,提出了一种具有灵活控制正,负,零序电流(FPNZSC)和功率振荡的广义参考电流产生。其次,根据要求,呈现了基于功率振荡和峰值电流的实际值约束的最大允许功率注射(MAPI)算法。所提出的MAPI-FPNZSC策略进一步通过三线逆变器系统中的方法延伸了现有的故障骑行,这也适用于单线到地面和双线接地故障,并且可以在天然或静止的情况下容易地实现框架。通过将提供的三种典型目标与传统方法进行比较,并在实时硬件循环实验平台中进行验证,验证了所提出的策略的有效性。

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