Hardware Implementation of Hybrid Renewable Energy Source for Integrated Fed Micro-Grid

B. Pattanaik, Dr.K. Sakthivel, Dr. S. Priya
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Abstract

Because of the rapid development progress of Power natural philosophy strategies, applications with electrical phenomenon (PV) power and wind generation are swollen basically the employment of sun supercharged And wind energies severally wouldn't offer an immersed yield voltage that the solar power and Wind energy square measure consolidated can improve the characteristics of every alternative. To diminish the ability demand on the normal power age space, we have a tendency to propose this method. Various ways square measure by and by for age of intensity utilizing SolarWind Hybrid System with most electrical outlet pursuit (MPPT). Steady voltage strategy is used for much extreme power exchange. This strategy has to be compelled to have some key highlights to create the potency. Above all this article proposes a completely unique technique for implementing MPPT controller in our hybrid renewable energy generation system known as FLC rule for higher potency than alternative strategies. The higher than explained system is intended and modeled for output results were obtained.
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集成Fed微电网混合可再生能源的硬件实现
由于电力自然哲学战略的快速发展进步,电现象发电(PV)和风力发电的应用基本上膨胀,太阳能增压和风能的使用分别不会提供浸入式屈服电压,太阳能和风能的综合措施可以改善每种替代方案的特性。为了减少对正常功率年龄空间的能力需求,我们倾向于提出这种方法。利用太阳风混合动力系统与大多数电源插座追踪(MPPT),通过各种方式逐次测量强度。稳定电压策略用于许多极端功率交换。这一战略必须有一些关键的亮点,以创造效力。综上所述,本文提出了一种完全独特的技术,用于在我们的混合可再生能源发电系统中实现MPPT控制器,称为FLC规则,具有比其他策略更高的效力。对高于解释的系统进行了设计,并对输出结果进行了建模。
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