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Optimized Synchronization Technique for Single Phase Grid-connected Converters

机译:单相网连接转换器优化的同步技术

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The performances of the synchronization unit have become a crucial issue in applications involving grid-connected power converters.In view of the topologies of modern power systems, control algorithm of Distributed Generation (DG) sources are required to respond effectively to grid faults in order to support and enhance the stability of the grid. Thus, improving the accuracy and the robustness of the synchronization method during normal or distorted conditions is important to fulfill these requirements. The objective of this paper is to improve the performances of a Phase-Locked Loop (PLL) through an optimized tuning of the PI controller. This synchronization technique is based on a second order generalized integrator and it is intended for single-phase Photovoltaic (PV) systems. Its performances are evaluated by simulating its behavior during grid faults. An experimental prototype is developed to validate the operation of the synchronization unit when connected to the single-phase grid.
机译:同步单元的性能已成为涉及电网连接电源转换器的应用中的重要问题。在现代电力系统的拓扑视图中,分布式发电(DG)源的控制算法需要有效地响应网格故障,以便支持并增强网格的稳定性。因此,在正常或扭曲条件下提高同步方法的准确性和鲁棒性对于满足这些要求是重要的。本文的目的是通过PI控制器的优化调谐来改善锁相环(PLL)的性能。该同步技术基于二阶广义集成器,它适用于单相光伏(PV)系统。它通过在网格故障期间模拟其行为来评估其性能。开发了一个实验原型,以在连接到单相网格时验证同步单元的操作。

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