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Fault response of inverter interfaced distributed generators in grid-connected applications

机译:并网应用中逆变器接口分布式发电机的故障响应

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Inverter-interfaced distributed generation is prominent in some distribution networks because of the growth of PV and other new sources. In order to ensure that protection system design remains effective in this environment, it is essential to be able to accurately represent inverters in fault current calculations. Calculating the fault current contribution is complicated because of the nature of the transition into current limiting mode and because the current produced is a function of control choices as well as physical components. The desire is for a simple source plus impedance model for incorporation into network studies. Based on knowledge of the control strategy and the details of the method of current limiting, linear analytical equivalent models are proposed whose source and impedance values (at fundamental frequency) can be expressed as a function of the inverter's hardware parameters and controller gains. The dependence of the entry into current limit on the nature and location of other generators in the network leads to a proposal for a load flow based fault analysis incorporating the new models. This iteratively determines which inverter experiences current limiting. The proposed inverter fault models and their use in a network fault analysis have been verified against experimental results in a 3-inverter network.
机译:由于光伏和其他新能源的增长,逆变器接口的分布式发电在某些配电网络中占有重要地位。为了确保保护系统设计在这种环境下仍然有效,必须能够在故障电流计算中准确表示逆变器。由于过渡到电流限制模式的性质,并且由于产生的电流是控制选择以及物理组件的函数,因此计算故障电流贡献非常复杂。人们希望有一个简单的源加阻抗模型,以便将其纳入网络研究中。基于控制策略的知识和限流方法的详细信息,提出了线性分析等效模型,其源值和阻抗值(在基本频率下)可以表示为逆变器硬件参数和控制器增益的函数。进入电流极限对网络中其他发电机的性质和位置的依赖性导致提出了基于潮流的故障分析的建议,该故障分析包括了新模型。这样可以反复确定哪个逆变器受到电流限制。所提出的逆变器故障模型及其在网络故障分析中的应用已针对3逆变器网络中的实验结果进行了验证。

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