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Modeling, Analysis, and Design of Stationary-Reference-Frame Droop-Controlled Parallel Three-Phase Voltage Source Inverters

机译:固定参考框架下垂控制的并联三相电压源逆变器的建模,分析和设计

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摘要

Power-electronics-based microgrids (MGs) consist of a number of voltage source inverters (VSIs) operating in parallel. In this paper, the modeling, control design, and stability analysis of parallel-connected three-phase VSIs are derived. The proposed voltage and current inner control loops and the mathematical models of the VSIs are based on the stationary reference frame. A hierarchical control scheme for the paralleled VSI system is developed comprising two levels. The primary control includes the droop method and the virtual impedance loops, in order to share active and reactive powers. The secondary control restores the frequency and amplitude deviations produced by the primary control. Also, a synchronization algorithm is presented in order to connect the MG to the grid. Experimental results are provided to validate the performance and robustness of the parallel VSI system control architecture.
机译:基于电力电子技术的微电网(MG)由许多并联运行的电压源逆变器(VSI)组成。本文推导了并联三相VSI的建模,控制设计和稳定性分析。所提出的电压和电流内部控制回路以及VSI的数学模型均基于固定参考系。开发了包括两个级别的并行VSI系统的分层控制方案。主要控制包括下垂方法和虚拟阻抗环路,以便共享有功和无功功率。次级控制恢复由初级控制产生的频率和幅度偏差。此外,提出了一种同步算法,以将MG连接到电网。提供实验结果以验证并行VSI系统控制体系结构的性能和鲁棒性。

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