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作 者:S. Saravanasundaram S. Muthukrishnan G. Murugananth S. Saravanasundaram;S. Muthukrishnan;G. Murugananth(Department of Electrical and Electronics Engineering, Hindusthan College of Engineering and Technology, Coimbatore, India;Department of Electronics and Communication Engineering, Sri Eshwar College of Engineering, Coimbatore, India;Department of Electrical and Electronics Engineering, Ahalia School of Engineering and Technology, Palakkad, India)
机构地区:[1]Department of Electrical and Electronics Engineering, Hindusthan College of Engineering and Technology, Coimbatore, India [2]Department of Electronics and Communication Engineering, Sri Eshwar College of Engineering, Coimbatore, India [3]Department of Electrical and Electronics Engineering, Ahalia School of Engineering and Technology, Palakkad, India
出 处:《Circuits and Systems》2016年第11期3448-3455,共8页电路与系统(英文)
摘 要:Pulse Width Modulated (PWM) inverter-fed induction motor drives are most common in industrial applications. This paper aims at development of double boost converter for PWM inverter-fed three-phase induction motor. The inverter topology is designed with four switches. The proposed drive system has been simulated using Matlab/Simulink and the performance of has been assessed in terms of output voltage, output current, power factor and THD. From the simulation results, it is evident that the three-phase voltage waveforms of the proposed system are less distorted, with their currents being more sinusoidal. A comparative analysis has been made with the conventional six-switch inverter fed drive. The proposed system offered a THD of 1.84%, whereas for the conventional system it was 13.96%. These results inferred that the proposed double boost converter with four-switch based drive scheme exhibits superior performance.Pulse Width Modulated (PWM) inverter-fed induction motor drives are most common in industrial applications. This paper aims at development of double boost converter for PWM inverter-fed three-phase induction motor. The inverter topology is designed with four switches. The proposed drive system has been simulated using Matlab/Simulink and the performance of has been assessed in terms of output voltage, output current, power factor and THD. From the simulation results, it is evident that the three-phase voltage waveforms of the proposed system are less distorted, with their currents being more sinusoidal. A comparative analysis has been made with the conventional six-switch inverter fed drive. The proposed system offered a THD of 1.84%, whereas for the conventional system it was 13.96%. These results inferred that the proposed double boost converter with four-switch based drive scheme exhibits superior performance.
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