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AC induction servo sizing for motion control applications via loss minimizing real-time flux control

机译:通过将损耗最小化的实时磁通量控制来实现运动控制应用的交流感应伺服尺寸

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摘要

A design procedure for induction machine servo motion control applications that can be used to optimally select the minimum size machine and/or to obtain optimal time performance from a given machine is presented. The basis of the technique is in modeling and controlling of machine losses. In motion control servo applications, the position and velocity trajectories are often specified. For such cases, the rotor flux is a dynamic variable that dramatically affects the machine losses. By dynamically manipulating the flux, the losses can be minimized. To implement the design analysis, a dynamic programming tool is used. Its output is the minimal loss flux trajectory for a given cycle or for the minimum cycle time for a given thermal capability. The minimal loss flux trajectory is then modeled in reduced form for real-time implementation. Theoretical and experimental results demonstrate substantial performance advantages from such an approach.
机译:提出了一种用于感应电机伺服运动控制应用程序的设计程序,该程序可用于最佳选择最小尺寸的电机和/或从给定电机获得最佳时间性能。该技术的基础是机器损失的建模和控制。在运动控制伺服应用中,通常指定位置和速度轨迹。在这种情况下,转子磁通是一个动态变量,会极大地影响电机损耗。通过动态操纵磁通量,可以将损耗降至最低。为了执行设计分析,使用了动态编程工具。它的输出是给定循环的最小损耗通量轨迹或给定热容量的最小循环时间。然后以最小化的形式对最小损耗通量轨迹进行建模,以实现实时实现。理论和实验结果证明了这种方法的显着性能优势。

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