首页> 外文会议>Annual IEEE Power Electronics Specialists Conference >Instantaneous torque control of electric motor drives
【24h】

Instantaneous torque control of electric motor drives

机译:电动机驱动的瞬时转矩控制

获取原文

摘要

In the control of adjustable speed drives, the performance of inexpensive digital integrated circuits is approaching the stage where traditional control algorithms may be displaced by newer algorithms that better exploit their speed and the functional capabilities of their software. This paper introduces the concept of “instantaneous torque control” as an objective worth pursuing in the application of such digital IC's to drive systems. Instantaneous torque control would in principle permit the fastest possible response and the elimination of torque ripple, along with many other advantages not possible with conventional control algorithms, most of which are set up to control a time-averaged torque. This paper develops some of the fundamental principles of instantaneous torque control for the switched reluctance motor, which is used as an example because, like the brushless dc permanent-magnet motor with concentrated windings, it has the potential for rapid response but it can have appreciable torque ripple with unfavorable firing angles. Neither of these machines satisfies the conditions for the existence of a reference-frame transformation that will eliminate the rotor position from the voltage and torque equations, and this opens up a number of interesting questions as to the generality of instantaneous torque control algorithms, and whether they can be incorporated into the general or unified theory of electrical machines.
机译:在可调速驱动器的控制中,廉价的数字集成电路的性能已接近可将传统控制算法替换为可更好地利用其速度和软件功能的新型算法所取代的阶段。本文介绍了“瞬时转矩控制”的概念,这是在将此类数字IC应用于驱动系统时值得追求的目标。瞬时转矩控制原则上将允许最快的响应和转矩波动的消除,以及传统控制算法无法实现的许多其他优点,其中大多数设置用于控制时间平均转矩。本文提出了开关磁阻电机瞬时转矩控制的一些基本原理,以该示例为例,因为它像具有集中绕组的无刷直流永磁电动机一样,具有快速响应的潜力,但它可以具有相当大的可观性。不利的点火角度产生转矩脉动。这些机器都不满足存在参考框架变换的条件,该参考框架变换将消除电压和转矩方程式中的转子位置,这就瞬时转矩控制算法的通用性以及是否采用瞬时转矩控制算法提出了许多有趣的问题。它们可以并入电机的一般或统一理论中。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号