通过使用特殊的永磁电机驱动来节省电梯的能源

Vasileios I. Vlachou, T. S. Karakatsanis, A. Kladas
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引用次数: 0

摘要

本文介绍了一种特殊的三相永磁电机驱动控制策略在电梯中的节能效果。所提出的控制方法,基于在永磁电机中实现的特定变幅变频电压控制模式技术,与标准感应电机电梯案例进行了比较。通过适当地同时改变电机电压的幅度和频率,在电梯各自的运动过程中,可以在平稳启动和停止动作的同时达到高速,其中包括减少供电电流。此外,该方法具有高功率因数和良好的驱动质量。所介绍的控制技术实现了地板的平整和系统的群体运动,使用可编程存储器中的速度模式,该模式是根据电梯的位置成比例产生的。在这方面,可以获得显著的节能,这取决于所实施的电机类型,与传统技术相比,可节省高达30%的能源。这些改进可以通过适当处理所应用的脉宽调制技术来实现。给出了各种模拟和实验结果,说明了采用所提出的方法所取得的各自的节能效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy savings in elevators by using a particular permanent magnet motor drive
This paper presents the energy savings achieved by using a particular three-phase permanent-magnet motor drive control strategy in an elevator application. The proposed control methodology, based on a particular variable-amplitude variable-frequency voltage control pattern technique implemented in a permanent-magnet motor, is compared to a standard induction motor elevator case. By adopting appropriate simultaneous changes in the amplitude and frequency of the motor voltage, high speeds can be attained in conjunction with smooth starting and stopping actions involving a reduced supply current during the respective movement of the elevator. In addition, this method exhibits a high power factor with a good driving quality. The control technique introduced achieves the levelling-off of the floor and the group movement of the system using in the programmable memory a speed pattern that is generated targeting proportionality to the position of the lift. In that respect, significant energy savings can be obtained, which, depending on the type of motor implemented, can be up to 30% compared to the conventional techniques. These improvements can be attained with the appropriate handling of the applied pulse width modulation techniques. Various simulated and experimental results are given, illustrating the respective energy savings achieved with the proposed methodology.
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