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Intelligent approach-based hybrid control algorithm for integration of solar photovoltaic system in smart grid environment

机译:基于智能方法的混合控制算法,用于智能电网环境中太阳能光伏系统集成

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摘要

Integration of solar PV as a distributed generator (DG) require efficient and coordinated control measures for the proper synchronization. In this paper, a hybrid control algorithm for single stage solar photovoltaic (PV) system integrated with low voltage (LV)/medium voltage (MV) grid is proposed. The hybrid algorithm utilizes I cos Φ technique and quasi-Newton back-propagation (QNBP) neural network (NN). The main contributions of the present work are: i) support the utility grid by feeding power and connected loads, ii) provide harmonics elimination, reactive power compensation, load balancing, iii) also works in power factor correction (PFC) and zero voltage regulation modes, iv) provides power quality improvement. The proposed control of grid tied PV system provides very fast response during static and dynamic conditions. The obtained results are compared with other well-established algorithms available in the literature. The comparison of the proposed algorithm is done on the basis of various parameters such as DC voltage undershoot and overshoot, settling time and THD in grid currents. The developed system is demonstrated in MATLAB/SIMULINK platform. Using the proposed algorithms there is significant improvement of 1.1% in total harmonic distortion (THD) of source current. The results of proposed controllers are experimentally validated on a developed laboratory protype.
机译:作为分布式发电机(DG)的太阳能光伏集成需要有效和协调的控制措施来正确同步。本文提出了一种与低电压(LV)/中电压(MV)网集成的单级太阳能光伏(PV)系统的混合控制算法。混合算法利用 i COS.φ 技术和准牛顿回波传播(QNBP)神经网络(NN)。本作工作的主要贡献是:i)通过馈送电源和连接负载,II)提供谐波消除,无功功率补偿,负载平衡,III)的主要贡献也适用于功率因数校正(PFC)和零电压调节模式,iv)提供电能质量改进。所提出的网格绑定PV系统控制在静态和动态条件下提供了非常快的响应。将获得的结果与文献中可用的其他良好的算法进行比较。所提出的算法的比较是基于各种参数进行的,例如DC电压下冲和过冲,稳定时间和网格电流中的THD。 Matlab / Simulink平台中的开发系统展示。使用所提出的算法,在源电流的总谐波失真(THD)中显着提高了1.1%。提出的控制器的结果在开发的实验室型型桥上进行了实验验证。

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