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A MODELING AND CONTROL OF DFIG WIND AND PV SOLAR ENERGY SOURCE GENERATION FEEDING FOUR WIRE ISOLATED LOAD

机译:DFIG风和光伏太阳能发电的建模与控制送料四线隔离负荷

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This paper deals with the design and control of a connected wind hybrid generation system employing a Doubly Fed Induction Generator (DFIG) drove by a variable speed wind turbine and a variable irradiation PV solar feeding a three-phase four wire local loads. The ac terminals of the rotor-side converter are connected to the DFIG's rotor. A Maximum Power Point Tracking (MPPT) based rotor speed control is proposed. The PV solar is connected to the rotor-side converter. A nonlinear control is applied to grid-side converter, which operates as a shunt active power filter for compensating harmonics, unbalanced load currents and voltage regulation at the Point of Common Coupling (PCC). A new approach is also proposed for modeling the Voltage Source Converter (VSC). The proposed system is modeled and simulated using Power System Blockset Toolbox PSB of Matlab. The performance of the wind-PV solar hybrid system is presented to demonstrate its capability of MPPT, harmonics compensation, load balancing, and ac voltage regulation.
机译:这与采用一个双馈感应发电机(DFIG)所连接的风力混合发电系统的设计和控制纸优惠开车由变速风力涡轮机和可变照射光伏太阳能电池供给的三相四线局部载荷。转子侧变换器的交流端子连接到DFIG的转子。基于最大功率点跟踪(MPPT)的转子速度控制算法。光伏太阳能被连接到转子侧转换器。非线性控制被施加到电网侧转换器,其操作为用于在公共耦合点(PCC)补偿谐波,不平衡负载的电流和电压调节分路有源滤波器。一种新的方法还提出了模拟电压源转换器(VSC)。所提出的系统建模和仿真用Matlab电气系统模块工具箱PSB。被呈现在风力PV太阳能混合动力系统的性能,以证明其MPPT,谐波补偿,负载平衡,以及交流电压调节能力。

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