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Salp swarm algorithm-based optimal control scheme for LVRT capability improvement of grid-connected photovoltaic power plants: design and experimental validation

机译:基于SALP基于SALP Swarm算法的LVRT能力改进电网连接光伏发电厂的最优控制方案:设计与实验验证

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Contribution of Photovoltaic (PV) systems is rapidly growing and great attention is given to the design of PV controllers to enhance both the performance of PV systems and the low voltage ride through (LVRT) capability during abnormal operational conditions. This article presents a novel application of the salp swarm algorithm (SSA) in order to optimally tune the PV controllers to enhance the LVRT of grid-connected PV systems. Enhancement of LVRT is indicated in percentage undershoots or overshoots, settling time and steady-state error of voltage response. A control strategy is applied to the DC-DC converter to obtain a maximum power point tracking operation through a proportional-integral (PI)-based open fractional voltage control. The grid side inverter controls both the point of common coupling voltage and the DC-link voltage through PI-based cascaded-voltage control. To get PI controller parameters that guarantee the optimum design of the controllers, the fitness function is optimized by using the SSA. The proposed optimal control scheme is tested under various fault scenarios and compared with other conventional optimization-based PI controllers to examine its validity under PSCAD environment. The effectiveness of the optimal control scheme is verified by comparing the simulation results with the practical results of the PV system.
机译:光伏(PV)系统的贡献迅速增长,并且对PV控制器的设计进行了极大的关注,以增强光伏系统的性能和在异常操作条件下通过(LVRT)能力(LVRT)能力。本文介绍了SALP群算法(SSA)的新颖应用,以便最佳地调整光伏控制器以增强网格连接的光伏系统的LVRT。 LVRT的增强在百分比下表明,下冲或过冲,稳定时间和电压响应稳态误差。控制策略应用于DC-DC转换器,以通过比例积分(PI)的开放分数电压控制获得最大功率点跟踪操作。电网侧逆变器通过基于PI的级联电压控制来控制公共耦合电压和DC-LINK电压的两者。为了获得保证控制器的最佳设计的PI控制器参数,使用SSA优化健身功能。在各种故障场景下测试了所提出的最佳控制方案,与其他基于优化的PI控制器相比,以检查其在PSCAD环境下的有效性。通过将模拟结果与光伏系统的实际结果进行比较来验证最佳控制方案的有效性。

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