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Modeling of unbalanced three-phase driving-point impedance with application to control of grid-connected power converters

机译:不平衡三相驱动点阻抗建模及其在并网功率变换器控制中的应用

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摘要

The dq transformation is widely used in the analysis and control of three-phase symmetrical and balanced systems. The transformation is the real counterpart of the complex transformations derived from the symmetrical component theory. The widespread distributed generation and dynamically connected unbalanced loads in a three-phase system inherently create unbalanced voltages to the point of common coupling. The unbalanced voltages will always be transformed as coupled positive-sequence and negative-sequence components with double-frequency ripples that can be removed by some filtering algorithms in the dq frame. However, a technique for modeling unbalanced three-phase impedance between voltages and currents of same sequences or of opposite sequences is still missing. We propose an effective method for modeling unbalanced three-phase impedance using a decoupled zero-sequence impedance and two interacting positive-sequence and negative-sequence balanced impedances in the dq frame. The proposed method can decompose a system with unbalanced resistance, inductance, or capacitance into a combination of independent reciprocal bases (IRB). Each IRB basis belongs to one of the positive-sequence, negative-sequence, or zero-sequence system components to facilitate further analysis. The effectiveness of this approach is verified with a case study of an unbalanced load and another case study of an unbalanced voltage compensator in a microgrid application. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:dq变换广泛用于三相对称和平衡系统的分析和控制。该变换是从对称分量理论派生的复杂变换的真正对应物。三相系统中分布广泛的发电和动态连接的不平衡负载会固有地产生不平衡电压,达到公共耦合点。不平衡电压将始终转换为具有双频纹波的正序和负序分量,可以通过dq帧中的某些滤波算法将其消除。但是,仍然缺少用于对相同序列或相反序列的电压和电流之间的不平衡三相阻抗建模的技术。我们提出了一种有效的方法,用于在dq帧中使用解耦的零序阻抗和两个相互作用的正序和负序平衡阻抗来建模不平衡三相阻抗。所提出的方法可以将具有不平衡电阻,电感或电容的系统分解为独立的互惠基数(IRB)的组合。每个IRB基础都属于正序,负序或零序系统组件之一,以便于进一步分析。通过微电网应用中不平衡负载的案例研究和不平衡电压补偿器的另一个案例研究,验证了该方法的有效性。版权所有(c)2015 John Wiley&Sons,Ltd.

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