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Performance study of a synchronization algorithm for a 3-phase photovoltaic grid-connected system under harmonic distortions and unbalances

机译:谐波畸变和不平衡下三相光伏并网系统同步算法的性能研究

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In a distributed generation (DG) system, several renewable agents are connected to the low-voltage 3-phase utility grid through an inverter which is used as power condition and must guarantee the higher efficiency of the renewable agent. To attain this level of efficiency, a unitary power factor (FP) between the inverter currents and the utility grid voltages is necessary, and a synchronization algorithm is needed for the perfect synchronization between the renewable agent and the 3-phase utility grid. Within this context, this paper gives a performance study of the Positive Sequence Detector plus a Synchronous Reference Frame Phase-Locked Loop (PSD + dqPLL) as the synchronization algorithm, evaluating its accuracy under different conditions and studying their advantages and drawbacks. A grid-connected photovoltaic system with a nominal power of 6kW is used so as to evaluate the behavior of the synchronization algorithm when the 3-phase utility grid is affected by some disturbances such as voltage unbalances, frequency variations and harmonic distortions. Firstly, several simulations with a disturbed 3-phase utility grid using MATLAB/SIMULINK from The MathWorks, Inc. are shown, and secondly, the previous tests are run in a Real-Time Digital Simulation (RTDS) platform in order to validate the obtained results with simulations.
机译:在分布式发电(DG)系统中,数个可再生能源通过逆变器连接到低压三相公用电网,该逆变器用作电力条件,必须保证可再生能源的更高效率。为了达到这种效率水平,逆变器电流和公用电网电压之间必须有一个统一的功率因数(FP),并且需要一种同步算法来使可再生能源和三相公用电网之间实现完美同步。在此背景下,本文对正序列检测器以及同步参考帧锁相环(PSD + dqPLL)作为同步算法进行了性能研究,评估了其在不同条件下的准确性并研究了其优缺点。当标称功率为6kW的并网光伏系统被使用时,当三相公用电网受到诸如电压不平衡,频率变化和谐波失真之类的某些干扰的影响时,该同步系统的性能将得到评估。首先,显示了使用MathWorks,Inc.的MATLAB / SIMULINK在三相电​​网受干扰的情况下进行的几次仿真,其次,先前的测试在实时数字仿真(RTDS)平台中运行,以验证所获得的结果。模拟结果。

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