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DSOGI-PLL Based Power Control Method to Mitigate Control Errors Under Disturbances of Grid Connected Hybrid Renewable Power Systems

机译:基于DSOGI-PLL的功率控制方法,可减轻并网混合可再生电力系统扰动下的控制误差

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The control of power converter devices is one of the main research lines in interfaced renewable energy sources, such as solar cells and wind turbines. Therefore, suitable control algorithms should be designed in order to regulate power or current properly and attain a good power quality for some disturbances, such as voltage sag/swell, voltage unbalances and fluctuations, long interruptions, and harmonics. Various synchronisation techniques based control strategies are implemented for the hybrid power system applications under unbalanced conditions in literature studies. In this paper, synchronisation algorithms based Proportional-Resonant (PR) power/current controller is applied to the hybrid power system (solar cell + wind turbine + grid), and Dual Second Order Generalized Integrator-Phase Locked Loop (DSOGI-PLL) based PR controller in stationary reference frame provides a solution to overcome these problems. The influence of various cases, such as unbalance, and harmonic conditions, is examined, analysed and compared to the PR controllers based on DSOGI-PLL and SRF-PLL. The results verify the effectiveness and correctness of the proposed DSOGI-PLL based power control method.
机译:功率转换器设备的控制是接口可再生能源(例如太阳能电池和风力涡轮机)中的主要研究线之一。因此,应设计合适的控制算法,以适当地调节功率或电流,并针对某些干扰(例如电压骤降/骤升,电压不平衡和波动,长时间中断和谐波)获得良好的电能质量。在文献研究中,在不平衡条件下为混合动力系统应用实现了基于各种同步技术的控制策略。本文将基于比例谐振(PR)功率/电流控制器的同步算法应用于混合动力系统(太阳能电池+风力发电机+电网),并基于双二阶广义积分器锁相环(DSOGI-PLL)固定参考系中的PR控制器提供了解决这些问题的解决方案。检查,分析各种情况的影响,例如不平衡和谐波条件,并将其与基于DSOGI-PLL和SRF-PLL的PR控制器进行比较。结果验证了所提出的基于DSOGI-PLL的功率控制方法的有效性和正确性。

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