未知初始条件的时域系统辨识。

Wen-pei Sung, Vernon C Matzen, Ming-hsiang Shih
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引用次数: 4

摘要

系统识别是一种使用测量数据来创建或改进被测对象的数学模型的方法。然而,从测量数据来看,噪声在响应开始时就被注意到了。避免这种噪声问题的一种解决方案是跳过有噪声的数据,然后使用初始条件作为活动参数,通过使用系统识别过程来发现。本文描述了将初始条件设置为主动参数的方程的发展。仿真数据和实际受剪建筑物的响应数据验证了算法和计算机程序的准确性,其中初始条件作为有效参数。数值和实验模型分析表明,质量、刚度和频率的取值是合理的,计算的加速度和实测的加速度吻合得很好。
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Time domain system identification of unknown initial conditions.

System identification is a method for using measured data to create or improve a mathematical model of the object being tested. From the measured data however, noise is noticed at the beginning of the response. One solution to avoid this noise problem is to skip the noisy data and then use the initial conditions as active parameters, to be found by using the system identification process. This paper describes the development of the equations for setting up the initial conditions as active parameters. The simulated data and response data from actual shear buildings were used to prove the accuracy of both the algorithm and the computer program, which include the initial conditions as active parameters. The numerical and experimental model analysis showed that the value of mass, stiffness and frequency were very reasonable and that the computed acceleration and measured acceleration matched very well.

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