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Solution for Voltage and Frequency Regulation in Standalone Microgrid using Hybrid Multiobjective Symbiotic Organism Search Algorithm

机译:基于混合多目标共生生物搜索算法的独立微电网电压和频率调节解决方案

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Voltage and frequency regulation is one of the greatest challenges for proper operation subsequent to the isolated microgrid. To validate the satisfactory electric power quality supply to customers, the proposed manuscript tries to enhance the quality of energy provided by DG (Distributed generation) units connected to the subsequent isolated grid. Microgrid and simulation-based control structure including voltage and current control feedback loops is proposed for microgrid inverters to recover voltage and frequency of the system subsequently for any fluctuations in load change. The proportional-integral (PI) controller connected to the voltage controller is an end goal to obtain smooth response in most of the consistent frameworks. The present controller creates the space vector pulse width modulation signals which are given to the three-leg inverter. The objective elements of the multiobjective optimization issue are voltage overshoot and undershoot, rise time, settling time, and integral time absolute error (ITAE). The hybrid Multiobjective Symbiotic Organism Search (MOSOS) calculation is associated for self-tuning of control parameters keeping in mind the end goal to deal with the voltage and frequency. The proposed PI controller, along with the hybrid Multiobjective Symbiotic Organism Search algorithm, provides the solution for the greatest challenge of voltage and frequency regulation in an isolated-microgrid operation.
机译:电压和频率调节是隔离微电网之后正确运行的最大挑战之一。为了验证向客户提供满意的电能质量供应,建议的手稿试图提高与后续隔离电网连接的DG(分布式发电)单元提供的电能质量。提出了一种基于微电网和基于仿真的控制结构,包括电压和电流控制反馈回路,用于微电网逆变器,以便随后在负载变化的任何情况下恢复系统的电压和频率。连接到电压控制器的比例积分(PI)控制器是在大多数一致框架中获得平滑响应的最终目标。本控制器产生空间矢量脉冲宽度调制信号,该信号被提供给三脚逆变器。多目标优化问题的目标要素是电压过冲和下冲,上升时间,建立时间和积分时间绝对误差(ITAE)。混合多目标共生生物搜索(MOSOS)计算与控制参数的自动调整相关联,同时牢记处理电压和频率的最终目标。提出的PI控制器以及混合多目标共生生物搜索算法为隔离微电网运行中最大的电压和频率调节挑战提供了解决方案。

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