首页> 外文期刊>Journal of intelligent material systems and structures >Model Predictive Control of a Two Stage Actuation System using Piezoelectric Actuators for Controllable Industrial and Automotive Brakes and Clutches
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Model Predictive Control of a Two Stage Actuation System using Piezoelectric Actuators for Controllable Industrial and Automotive Brakes and Clutches

机译:压电致动器用于可控工业和汽车制动器和离合器的两级致动系统的模型预测控制

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摘要

High bandwidth actuation systems that are capable of simultaneously producing relatively large forces and displacements are required for use in automobiles and other industrial applications. Conventional hydraulic actuation mechanisms used in automotive brakes and clutches are complex, inefficient and have poor control robustness. These lead to reduced fuel economy, controllability issues and other disadvantages. Recently, a two-stage hybrid actuation mechanism was proposed by combining classical electromechanical actuators like DC motors and advanced smart material devices like piezoelectric actuators. This article discusses the development and implementation of a model predictive control methodology for controlling this two-stage actuation system in tracking various reference inputs. Additionally, this methodology also employs a unit-step delayed disturbance estimate to account for actuator hysteresis, other nonlinearities and unmodeled dynamics in the system. Finally, the article highlights the effectiveness of this control methodology experimentally by tracking various reference inputs.
机译:为了在汽车和其他工业应用中使用,需要能够同时产生相对较大的力和位移的高带宽致动系统。用于汽车制动器和离合器的常规液压致动机构复杂,效率低并且控制鲁棒性差。这些导致燃料经济性降低,可控性问题和其他缺点。最近,通过结合经典的机电执行器(如直流电动机)和先进的智能材料装置(如压电执行器),提出了一种两阶段混合执行机构。本文讨论了模型预测控制方法的开发和实现,该模型预测控制方法用于在跟踪各种参考输入时控制此两阶段致动系统。此外,该方法还采用单位步长的延迟干扰估计来解决执行器滞后,其他非线性和系统中未建模的动力学问题。最后,本文通过跟踪各种参考输入,以实验方式突出了此控制方法的有效性。

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