确定受振人体模型的结构和参数

V. Tregubov, N. K. Egorova
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引用次数: 0

摘要

本文介绍了一个坐着的人的频率特性的实验研究结果。分析表明,为了确定人体模型的结构和参数,必须找到模型参数确定问题的唯一解。否则,该模型不能用于构建振动保护系统,而振动保护系统是该模型的主要目的。这一问题在双质量人体模型中得到了解决。要做到这一点,需要知道模型结构中两个固体的总模型质量以及幅频响应和输入频率阻抗。除此之外,多关节肌肉对人体频率特性的影响是使用具有任意数量自由度的力学模型来发现的。特别指出了在上质量上存在附加反共振频率的可能性。
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Determining the structure and parameters of the human model subjected to vibration
This article presents results from an experimental study of the frequency properties of a sitting person. This analysis shows that in order to define the structure and parameters of a human body model, it is necessary to find the only solution to the problem of determining the model parameters. Otherwise, this model cannot be used to build vibration protection systems, which is its main purpose. This problem was solved for a two-mass human model. To do this, the total model mass and although the amplitude-frequency response and input frequency impedance for both solids in the model structure are needed to be known. In addition to this, the influence of multi-articular muscles on the frequency characteristics of a human body is found using mechanical models with an arbitrary number of degrees of freedom. In particular, the possibility of the existence additional antiresonance frequencies on the upper mass is shown.
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来源期刊
CiteScore
1.30
自引率
50.00%
发文量
10
期刊介绍: The journal is the prime outlet for the findings of scientists from the Faculty of applied mathematics and control processes of St. Petersburg State University. It publishes original contributions in all areas of applied mathematics, computer science and control. Vestnik St. Petersburg University: Applied Mathematics. Computer Science. Control Processes features articles that cover the major areas of applied mathematics, computer science and control.
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