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The performance analysis of dual-inverter three phase fed induction motor with open-end winding using various PWM schemes

机译:双逆变器三相馈电电动机采用各种PWM方案的开口绕组性能分析

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Induction motor with scheme open end winding (OEW) has attract many attention in the recent time as a compromising alternative of multi-level inverter. The structure contains of simplicity in generating multi-level inverter and has potential ability to obtain a better quality output due to higher number of the available switching states and voltage vectors.' Based on the method to divide the voltage references, various Pulse Width Modulation (PWM) schemes for the dual-inverter fed induction motor with OEW have been discussed in this paper. The first one is developed by equally splitting the voltage references to two inverters and termed as Equal Reference Division Pulse Width Modulation (ERD PWM). In the second PWM scheme, the voltage references are devided according to moduation index (M). At M 0.525, one inverter is modulated using maximum voltage reference while the other one inverter is modulated proportionaly according the change of voltage reference. The PWM scheme is named as Unequal Reference Division Pulse Width Modulation (URD PWM). In the third PWM scheme, the two inverters are modulated using different method, i.e one inverter is controlled in slow switching PWM and the second inverter are modulated using fast switching PWM. Hence the thirs PWM is named as Mixed Devider Switching (MDS) PWM scheme. The results shows that the MDS PWM provide the best voltage Total Harmonic Disortion (THD) performance among the three PWM schemes. Further the speed-torque acceleration shows that the dual-inverter fed structure is able to control the speed to reach the desired speed at t = 0.25 s. The speed is able to adjust when the load is apply at t = 0.4 s. The motor current THD and the mechanical torque reveal that the MDS PWM provide the best among three PWM schemes.
机译:带有方案开放式绕组(OEW)的感应电动机在最近的时间内引起了许多关注,因为多级逆变器的折衷替代。该结构在产生多电平逆变器时,具有简单性,并且具有由于较高数量的可用切换状态和电压向量而获得更好质量输出的能力。基于划分电压参考的方法,本文已经讨论了具有OEW的双逆变器馈相感应电动机的各种脉冲宽度调制(PWM)方案。通过同等地将电压引用平均到两个逆变器并称为等于的参考分割脉冲宽度调制(ERD PWM)来开发第一。在第二PWM方案中,根据调制索引(M),电压参考值偏离。在M> 0.525处,使用最大电压参考调制一个逆变器,而另一个逆变器根据电压参考的变化调制成比例。 PWM方案被命名为不等参考分割脉冲宽度调制(URD PWM)。在第三PWM方案中,使用不同的方法调制两个逆变器,即一个逆变器在慢速开关PWM中控制,第二逆变器使用快速切换PWM调制。因此,Thirs PWM被命名为混合开发器切换(MDS)PWM方案。结果表明,MDS PWM在三种PWM方案中提供了最佳的总电压总谐波血液(THD)性能。此外,速度扭矩加速度表明,双逆变器供给结构能够控制速度以在T = 0.25秒处达到所需速度。当负载施加在T = 0.4秒时,速度能够调整。电机电流THD和机械扭矩揭示了MDS PWM在三种PWM方案中提供了最佳状态。

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