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ENERGY COST ASSESSMENT OF THE ACTIVE CONTROL OF A ROTATING MACHINE BY USING AN ELECTROMAGNETIC ACTUATOR AND A PIEZOELECTRIC ACTUATOR

机译:电磁致动器和压电致动器对旋转电机主动控制的能量成本评估

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The performances for controlling a rotating machine by using either an Electromagnetic Actuator or a Piezoelectric Actuator are compared in this work. The aim is to establish selection criteria based on environmental impact. Life Cycle Analysis shows that the operating stage has a considerable impact. In this study, only the operating stage is considered. The energy consumed by the actuators seems to be the appropriate indicator for the same "mechanical" performances. Numerical studies are carried out in order to quantify the energy consumed in each case. Modal control strategy with a fuzzy controller is used. The controller inputs are displacements and velocities. The system studied is modeled by using finite element method and the electrical circuit of each actuator is modeled by using basic electricity and electromagnetism theories. Several configurations are assessed and defined by using the chosen Functional Unit.The results obtained show that both controllers are efficient and enable recommendations for optimal control procedures design for the energy consumed.
机译:在这项工作中,比较了通过使用电磁执行器或压电执行器来控制旋转机械的性能。目的是建立基于环境影响的选择标准。生命周期分析表明,运营阶段具有相当大的影响。在这项研究中,仅考虑了手术阶段。执行器消耗的能量似乎是相同“机械”性能的合适指标。为了量化每种情况下消耗的能量,进行了数值研究。使用带有模糊控制器的模态控制策略。控制器的输入是位移和速度。使用有限元方法对所研究的系统进行建模,并使用基本的电学和电磁学理论对每个执行器的电路进行建模。通过使用所选的功能单元,可以评估和定义几种配置。 获得的结果表明,这两种控制器都是高效的,并能够为所消耗的能量的最佳控制程序设计提供建议。

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