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High-Performance Control of Paralleled Three-Phase Inverters for Residential Microgrid Architectures Based on Online Uninterruptable Power Systems

机译:基于在线不间断电源系统的住宅微电网并联三相逆变器的高性能控制

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摘要

In this paper, a control strategy for the parallel operation of three-phase inverters forming an online uninterruptible power system (UPS) is presented. The UPS system consists of a cluster of paralleled inverters with LC filters directly connected to an AC critical bus and an AC/DC forming a DC bus. The proposed control scheme is performed on two layers: (i) a local layer that contains a “reactive power vs phase” in order to synchronize the phase angle of each inverter and a virtual resistance loop that guarantees equal power sharing among inverters; (ii) a central controller that guarantees synchronization with an external real/fictitious utility, and critical bus voltage restoration. Constant transient and steady-state frequency, active, reactive and harmonic power sharing, and global phase-locked loop resynchronization capability are achieved. Detailed system topology and control architecture are presented in this paper. Also a mathematical model was derived in order to analyze critical parameters effect on system stability. An experimental setup was built in order to validate the proposed control approach under several case-study scenarios. Finally, a conclusion is presented.
机译:在本文中,提出了一种用于形成在线不间断电源系统(UPS)的三相逆变器并联运行的控制策略。 UPS系统由一组并联的逆变器组成,这些逆变器的LC滤波器直接连接到AC关键总线和形成DC总线的AC / DC。所提出的控制方案在两层上执行:(i)包含“无功与相位”的本地层,以同步每个逆变器的相角;虚拟电阻环路,确保逆变器之间平均分配功率; (ii)中央控制器,可确保与外部实际/虚拟公用事业进行同步,并能恢复关键的总线电压。实现了恒定的瞬态和稳态频率,有功,无功和谐波功率共享以及全局锁相环再同步功能。本文介绍了详细的系统拓扑和控制架构。为了分析关键参数对系统稳定性的影响,还推导了数学模型。为了验证在几种案例研究方案下提出的控制方法,建立了一个实验装置。最后,给出结论。

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