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Parametric identification of a servo-hydraulic actuator for real-time hybrid simulation

机译:伺服液压执行器的参数识别用于实时混合仿真

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In a typical Real-time Hybrid Simulation (RTHS) setup, servo-hydraulic actuators serve as interfaces between the computational and physical substructures. Time delay introduced by actuator dynamics and complex interaction between the actuators and the specimen has detrimental effects on the stability and accuracy of RTHS. Therefore, a good understanding of servo-hydraulic actuator dynamics is a prerequisite for controller design and computational simulation of RTHS. This paper presents an easy-to-use parametric identification procedure for RTHS users to obtain re-useable actuator parameters for a range of payloads. The critical parameters in a linearized servo-hydraulic actuator model are optimally obtained from genetic algorithms (GA) based on experimental data collected from various specimen mass/ stiffness combinations loaded to the target actuator. The actuator parameters demonstrate convincing convergence trend in GA. A key feature of this parametric modeling procedure is its re-usability under different testing scenarios, including different specimen mechanical properties and actuator inner-loop control gains. The models match well with experimental results. The benefit of the proposed parametric identification procedure has been demonstrated by designing an H_∞ controller with the identified system parameters that significantly improves RTHS performance; and establishing an analysis and computational simulation of a servo-hydraulic system that help researchers interpret system instability and improve design of experiments.
机译:在典型的实时混合仿真(RTHS)设置中,伺服液压执行器充当计算和物理子结构之间的接口。执行器动力学以及执行器与样品之间复杂的相互作用所引入的时间延迟对RTHS的稳定性和准确性产生不利影响。因此,对伺服液压执行器动力学的充分了解是控制器设计和RTHS计算仿真的前提。本文为RTHS用户提供了一种易于使用的参数识别程序,以获取一系列有效载荷的可重复使用的执行器参数。线性化伺服液压执行器模型中的关键参数是根据从加载到目标执行器的各种样品质量/刚度组合中收集到的实验数据,从遗传算法(GA)最佳获得的。执行器参数证明了遗传算法令人信服的收敛趋势。该参数化建模过程的关键特征是其在不同测试场景下的可重用性,包括不同的样本机械性能和执行器内环控制增益。模型与实验结果吻合良好。通过设计具有识别出的系统参数的H_∞控制器,可以显着改善RTHS性能,从而证明了所提出的参数识别程序的优势。建立伺服液压系统的分析和计算仿真,以帮助研究人员解释系统不稳定性并改进实验设计。

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