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Per-phase vector control strategy for a four-leg voltage source inverter operating with highly unbalanced loads in stand-alone hybrid systems

机译:独立混合系统中具有高不平衡负载的四臂电压源逆变器的每相矢量控制策略

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摘要

This paper proposes a new per-phase vector (dq) control scheme for a four-leg grid-forming inverter operating in a three-phase four-wire hybrid stand-alone power system (mini-grid). The challenge is to provide balanced output voltages to highly unbalanced loads, very common in such systems, with a fast dynamic response. By using dq control in a per-phase basis one avoids the use of slow filter-based symmetrical components calculators (SCCs) while achieving zero error, i.e. voltage balancing, in steady-state. Further improvement in the dynamic response is achieved by using fictive axis emulation for obtaining the orthogonal current components required for the per-phase dq control. Simulation and experimental results are provided, to demonstrate the good performance of the system. It works very well, even when the grid-forming inverter supplies active power in two phases and absorbs in the other one, due to the presence of a single-phase PV inverter in the hybrid mini-grid.
机译:本文提出了一种新的每相矢量(dq)控制方案,该方案适用于在三相四线混合式独立电力系统(微型电网)中运行的四臂并网逆变器。挑战是要为高度不平衡的负载提供平衡的输出电压,这在此类系统中非常常见,并且具有快速的动态响应。通过在每相中使用dq控制,可以避免在稳态下实现零误差(即电压平衡)的同时避免使用基于滤波器的慢速对称分量计算器(SCC)。通过使用虚拟轴仿真来获得每相dq控制所需的正交电流分量,可以进一步改善动态响应。提供了仿真和实验结果,以证明该系统的良好性能。即使由于混合型微型电网中存在单相PV逆变器,即使形成电网的逆变器提供两相有功功率并吸收另一相的功率,它也能很好地工作。

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