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Solutions to avoid the worst case scenario in driving systems working under continuously variable conditions

机译:避免在不断变化的条件下驱动系统工作的最坏情况的解决方案

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The paper presents a study on the behavior of some control solutions for electric drive systems evolving in conditions of reference, disturbance and parameter variability. The results of this study substantiate new control solutions that ensure the possibility to avoid the worst cases. The study addresses the real situation of an electric drive system with continuously variable reference input (speed), variable moment of inertia and variable load disturbance. Two control structures with controllers with fixed parameters are considered and discussed with focus on the speed control loop. The justified new control structures employ the switching between several control algorithms; their design is based on the detailed mathematical model of the plant and on the particular features of the drive system. The solutions are validated by means of digital simulations and experiments on a laboratory equipment application for three values of the moment of inertia.
机译:本文对在参考,扰动和参数可变性条件下不断发展的电力驱动系统某些控制解决方案的行为进行了研究。这项研究的结果证实了新的控制解决方案,可确保避免最坏情况的可能性。该研究针对具有连续可变参考输入(速度),可变惯性矩和可变负载扰动的电力驱动系统的实际情况。考虑并讨论了带有固定参数控制器的两个控制结构,重点是速度控制回路。合理的新控制结构采用了几种控制算法之间的切换。他们的设计基于工厂的详细数学模型和驱动系统的特定功能。该解决方案通过在实验室设备应用上针对三个惯性矩值的数字仿真和实验进行了验证。

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