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Integration of Hybrid PV/Wind Generation System Using Fuzzy MPPT in Grid Connected System for Remote Area

机译:基于模糊MPPT的风光互补发电系统在偏远地区并网系统中的集成

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Photovoltaic and wind are renewable energy resources that widely used and grow rapidly in fulfilling electricity demand. Powers from both technologies depend on sunlight intensity and wind speed. For small scale power generation, DC voltage from both technologies is low and requires step-up converter to raise DC voltage ratio before converted into AC voltage. To optimize this system, step-up converter must have high ratio and efficiency to a distance of wide voltage input. This paper proposed an operation simulation and arrangement of DC-DC converter along with DC-AC from hybrid source PV-Wind which integrated to grid utilities without using storage device. High Gain Integrated Cascade Boost (HGICB) is DC-DC converter that has quadratic voltage ratio and used in this research. Then DC link connected to Voltage Source Inverter (VSI) which interconnected with utility grid and controlled by current control method. The total installed capacity of hybrid source is 4.4 kW. Wind turbine uses PMSG along with full bridge rectifier. To maximize and stabilize the generated power, MPPT fuzzy is used. Result from the simulation shows that converter capable to maintain maximum power whether from PV and wind turbine which canalized to utility grid in various irradiation condition, wind speed, and grid load alteration.
机译:光伏和风能是可再生能源资源,在满足电力需求方面得到了广泛使用和迅速发展。两种技术的动力都取决于阳光强度和风速。对于小规模发电,两种技术的直流电压都较低,并且需要升压转换器提高直流电压比,然后才能转换为交流电压。为了优化该系统,升压转换器必须在较宽的电压输入范围内具有较高的比率和效率。本文提出了一种混合电源PV-Wind的DC-DC转换器与DC-AC一起的运行仿真和布置,无需使用存储设备即可将其集成到电网中。高增益集成级联升压(HGICB)是具有二次电压比的DC-DC转换器,已在本研究中使用。然后,直流链路连接到电压源逆变器(VSI),该电压源逆变器与公用电网互连并通过电流控制方法进行控制。混合动力源的总装机容量为4.4千瓦。风力涡轮机使用PMSG和全桥整流器。为了最大化和稳定所产生的功率,使用了MPPT Fuzzy。仿真结果表明,无论是光伏发电还是风力发电,在各种辐照条件,风速和电网负荷变化的情况下,变流器都能保持最大功率。

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