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Performance Analysis of Three-Phase Phase-Locked Loops for Distorted and Unbalanced Grids

机译:畸变和不平衡电网三相锁相环性能分析

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This paper studies the performances of five typical Phase-locked Loops (PLLs) for distorted and unbalanced grid, which are the Decoupled Double Synchronous Reference Frame PLL (DDSRF-PLL), Double Second-Order Generalized Integrator PLL (DSOGI-PLL), Double Second-Order Generalized Integrator Frequency-Lock Loop (DSOGI-FLL), Double Inverse Park Transformation PLL (DIPT-PLL) and Complex Coefficient Filter based PLL (CCF-PLL). Firstly, the principles of each method are meticulously analyzed and their unified small-signal models are proposed to reveal their interior relations and design control parameters. Then the performances are compared by simulations and experiments to investigate their dynamic and steady-state performances under the conditions of a grid voltage with a negative sequence component, a voltage drop and a frequency step. Finally, the merits and drawbacks of each PLL are given. The compared results provide a guide for the application of current control, low voltage ride through (LVRT), and unintentional islanding detection.
机译:本文研究了用于畸变和不平衡电网的五个典型锁相环(PLL)的性能,分别是去耦双同步参考框架PLL(DDSRF-PLL),双二阶广义积分器PLL(DSOGI-PLL),双二阶通用积分器锁频环(DSOGI-FLL),双反向Park变换PLL(DIPT-PLL)和基于复杂系数滤波器的PLL(CCF-PLL)。首先,仔细分析了每种方法的原理,并提出了它们的统一小信号模型,以揭示它们的内部关系和设计控制参数。然后通过仿真和实验比较性能,以研究在具有负序分量,电压降和频率阶跃的电网电压条件下的动态和稳态性能。最后,给出了每个PLL的优缺点。比较结果为电流控制,低压穿越(LVRT)和无意孤岛检测提供了指导。

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