感应电机驱动系统采用推挽式变换器和三相SPWM逆变器,由太阳能光伏板供电

M. Abdur Razzak, Ahmed Sony Kamal Chowdhury, K. M. A. Salam
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引用次数: 14

摘要

本文提出了一种利用单一太阳能光伏板集成推挽变换器和三相逆变器的感应电机驱动系统拓扑结构。为了匹配太阳能电池板和电机负载之间的阻抗并提高面板电压,采用了直流推挽拓扑结构。为了获得最佳的电机性能和降低逆变器输出波形的总谐波失真,我们采用正弦脉宽调制(SPWM)技术进行逆变器电源电路的开关。此外,该设计还实现了一个闭环电机速度控制器,以便将电机速度调节到所需的设定点。采用最大功率点跟踪算法(Perturb & Observe)提取光伏板的最大功率。最后对仿真结果进行了讨论和分析,以验证所提设计的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Induction motor drive system using Push-Pull converter and three-phase SPWM inverter fed from solar photovoltaic panel
This article proposes a topology of induction motor drive system integrating a push-pull converter and a three-phase inverter using a single solar photovoltaic panel. To match impedance between the solar panel and motor load and to step-up the panel voltage, a dc-dc Push-Pull topology is employed. To obtain optimum motor performance and to reduce total harmonic distortion of the inverter output waveform, we employed sinusoidal pulse width modulation (SPWM) technique for switching of inverter power circuit. Furthermore, a closed-loop motor speed controller is implemented in the proposed design, in order to regulate the motor speed to the desired set point. Maximum power point tracking algorithm (Perturb & Observe) is used to extract maximum power from photovoltaic panel. Finally the simulation results are discussed and analyzed in order to verify the effectiveness of the proposed design.
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