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Steady state investigation of self excited 3 phase induction generator with novel leading VAR controller and mitigation of harmonics using active power filter

机译:新型领先var控制器自兴3相位诱导发电机的稳态调查,并使用有源电力滤波器减轻谐波

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Self Excited Induction Generator (SEIG) is identified as isolated power source, whose terminal voltage and frequency are controlled by varying speed, excitation capacitance or load impedance. Since load changes from time to time, the output parameters mostly are controlled by either speed or by varying excitation capacitance. To reduce the complexity in analysis, the speed of a prime-mover driving the induction generator is kept constant. For proper voltage built-up suitable value of excitation capacitance is necessary. This paper presents a method for calculating the minimum excitation capacitance using the equivalent circuit approach for analyzing the steady state operation of SEIG. Change in load impedance forces alteration in the value of excitation capacitance which is difficult to be implemented. A novel leading VAR controller (LVARC) consisting of uncontrolled converter, inverter and a series LCR resonance circuit, is introduced in between the load and source to take care of reactive power disparity thereby feeding the reactive power to the inductive loads and absorbing reactive power for capacitive loads. A closed loop operation of SEIG was developed using Shunt Active Power Filter (SAF) is used for harmonic elimination. MATLAB based simulation and experimental results are presented and compared for VAR controller operated with linear loads. Simulation study is made for Non-Linear loads with respect to SAF's. The simulation results show the effectiveness of Voltage built-up and harmonic reduction in Wind based Power Generation.
机译:自激诱导发电机(SEIG)被识别为隔离电源,其终端电压和频率通过不同的速度,激励电容或负载阻抗来控制。由于负载不时更改,因此输出参数主要由速度或通过变化的激励电容来控制。为了降低分析中的复杂性,驱动感应发生器的Prime-MOVER的速度保持恒定。对于适当的电压,建立合适的激励电容值是必要的。本文介绍了一种使用等效电路方法计算最小激励电容的方法,用于分析SEIG的稳态操作。负载阻抗力的变化力在难以实现的激励电容值中的变化。由不受控制的转换器,逆变器和串联LCR谐振电路组成的新型领先的VAR控制器(LVARC)在负载和源之间引入,以照顾无功功率差距,从而将无功功率馈送到电感负载和吸收无功功率电容负载。使用分流器有源电力滤波器(SAF)开发SEIG的闭环操作用于谐波消除。基于MATLAB基于模拟和实验结果,并将其与线性负载操作的VAR控制器进行了比较。对SAF的非线性负载进行了模拟研究。仿真结果表明,电压基于电力发电的电压建筑和谐波减小的有效性。

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