执行机构
控制理论(社会学)
补偿(心理学)
外推法
补偿方式
噪音(视频)
理论(学习稳定性)
计算机科学
运动学
工程类
图像(数学)
控制(管理)
人工智能
万维网
数学分析
物理
机器学习
精神分析
数字营销
经典力学
营销投资回报率
数学
心理学
作者
Mehdi Ahmadizadeh,Gilberto Mosqueda,A. M. Reinhorn
摘要
Abstract Compensation of delay and dynamic response of servo‐hydraulic actuators is critical for stability and accuracy of hybrid experimental and numerical simulations of seismic response of structures. In this study, current procedures for compensation of actuator delay are examined and improved procedures are proposed to minimize experimental errors. The new procedures require little or no a priori information about the behavior of the test specimen or the input excitation. First, a simple approach is introduced for rapid online estimation of system delay and actuator command gain, thus capturing the variability of system response through a simulation. Second, an extrapolation procedure for delay compensation, based on the same kinematics equations used in numerical integration procedures is examined. Simulations using the proposed procedures indicate a reduction in high‐frequency noise in force measurements that can minimize the excitation of high‐frequency modes. To further verify the effectiveness of the compensation procedures, the artificial energy added to a hybrid simulation as a result of actuator tracking errors is measured and used for demonstrating the improved accuracy in the simulations. Copyright © 2007 John Wiley & Sons, Ltd.
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