Modeling Single-Phase PQ Inverter for Unbalanced Power Dispatch in Islanded Microgrid

O. Bassey, K. Butler-Purry
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引用次数: 6

Abstract

For a three-phase islanded microgrid with non-stiff grid-supporting or grid-forming distributed generators (DGs), unbalance power dispatch from these DGs can negatively influence the voltage quality, stability, and lifespan of the DGs. One way to solve such unbalance is to have DGs that can compensate for the load unbalance by being able to dispatch unbalance power. In this work, single-phase controlled PQ inverter interfaced DGs are modeled for this purpose. A detailed control model of the single-phase PQ inverter is derived from which we approximate the power stage of the inverter to a voltage-controlled source. Simulation studies in PSCAD showed that the voltage-controlled model gives an accurate representation of the elaborate switching model of the single-phase PQ inverter. Coordination of unbalanced power dispatch is realized by stacking the single-phase inverter in a manner similar to the three-bridge four wire shunt active filter and dispatch setpoint are sent to the PQ inverters from the secondary and tertiary control level of the microgrid for load compensation purpose. Case studies of balanced, unbalanced and load compensated systems are presented and evaluated with two unbalance indices: phase voltage unbalance rate (PVUR) and true voltage unbalance factor (VUF). The studies showed that in an islanded microgrid with a non-stiff reference source, the primary source of voltage unbalance across three phase nodes is unbalanced loading and that by dispatching unbalanced power to the PQ inverters to compensate for load unbalance, a significant improvement in system balancing could be realized.
孤岛微电网不平衡功率调度的单相PQ逆变器建模
对于具有非刚性支撑电网或成网分布式发电机(dg)的三相孤岛微电网,这些dg的不平衡功率调度会对dg的电压质量、稳定性和寿命产生负面影响。解决这种不平衡的一种方法是使用能够通过分配不平衡功率来补偿负载不平衡的dg。在这项工作中,单相控制PQ逆变器接口dg为此目的建模。推导了单相PQ逆变器的详细控制模型,并将逆变器的功率级近似为电压控制源。在PSCAD上进行的仿真研究表明,压控模型能较好地表征单相PQ逆变器的精细开关模型。通过将单相逆变器以类似于三桥四线并联有源滤波器的方式叠加,实现不平衡功率调度的协调,并将调度设定值从微电网的二级和三级控制级发送给PQ逆变器进行负载补偿。给出了平衡系统、不平衡系统和负载补偿系统的实例研究,并用相电压不平衡率(PVUR)和真电压不平衡因子(VUF)这两个不平衡指标进行了评估。研究表明,在具有非刚性参考源的孤岛微电网中,三相节点电压不平衡的主要来源是负载不平衡,通过向PQ逆变器调度不平衡功率来补偿负载不平衡,可以显著改善系统的平衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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