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Simulation Study of Heavy Motor Soft Starter Based on Discrete Variable Frequency

机译:基于离散变频的重型电动机软起动器仿真研究

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摘要

For conventional motor soft starter, the starting torque would be seriously decreased when reduce the starting voltage, so it is limited to light load, However, many overloading start-up is required in practical applications. According to the relationship between three-phase asynchronous motor electromagnetic torque and power frequency, when keeping the size of voltage unchanged, the torque can be increased by reducing the power frequency. Keeping the main circuit of original motor soft starting system unchanged, the motor rotation is controlled by changing the thyristor trigger angle, converting the frequency which add up in the stator and utilizing the fundamental components. This paper presents a method of improving starting torque based on discrete variable frequency and the three-phase asynchronous motor soft starter model is established using MATLAB. The simulation results illustrate discrete variable frequency softer starter has many advantages in current, speed and torque compared to full-voltage starter and current limit starter.
机译:对于传统的电动机软启动器,降低启动电压会严重降低启动转矩,因此仅限于轻载,但是在实际应用中需要进行许多过载启动。根据三相异步电动机电磁转矩与工频之间的关系,在保持电压大小不变的情况下,可以通过降低工频来增加转矩。在保持原始电动机软启动系统主电路不变的情况下,通过改变晶闸管触发角,转换定子中的频率并利用基本元件来控制电动机的旋转。提出了一种基于离散变频的起动转矩改善方法,并利用MATLAB建立了三相异步电动机软起动器模型。仿真结果表明,与全电压启动器和限流启动器相比,离散变频软启动器在电流,速度和转矩方面具有许多优势。

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