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Determination of natural periods of vibration using genetic programming

机译:使用遗传程序确定自然振动周期

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摘要

Many building codes use the empirical equation to determine fundamental period of vibration where in effect of length, width and the stiffness of the building is not explicitly accounted for. Also the equation, estimates the fundamental period of vibration with large safety margin beyond certain height of the building. An attempt is made to arrive at the simple empirical equations for fundamental period of vibration with adequate safety margin, using soft computing technique of Genetic Programming (GP). In the present study, GP models are developed in four categories, varying the number of input parameters in each category. Input parameters are chosen to represent mass, stiffness and geometry of the buildings directly or indirectly. Total numbers of 206 buildings are analyzed out of which, data set of 142 buildings is used to develop these models. It is observed that GP models developed under B and C category yield the same equation for fundamental period of vibration along X direction as well as along Y direction whereas the equation of fundamental period of vibration along X direction and along Y direction is of the same form for category D. The equations obtained as an output of GP models clearly indicate the influence of mass, geometry and stiffness of the building over fundamental period of vibration. These equations are then compared with the equation recommended by other researcher.
机译:许多建筑法规使用经验公式来确定振动的基本周期,在该周期中并未明确考虑建筑物的长度,宽度和刚度。该方程还估算了超出建筑物特定高度时具有较大安全裕度的振动的基本周期。尝试使用遗传编程(GP)的软计算技术得出具有足够安全裕度的基本振动周期的简单经验公式。在本研究中,GP模型分为四个类别,每个类别中输入参数的数量不同。选择输入参数以直接或间接表示建筑物的质量,刚度和几何形状。分析了206座建筑物的总数,其中使用142座建筑物的数据集来开发这些模型。可以看出,在B和C类别下开发的GP模型对于X方向和Y方向的基本振动周期方程产生相同的方程,而X方向和Y方向的基本振动周期方程具有相同的形式。 D类。作为GP模型输出获得的方程式清楚地表明了建筑物的质量,几何形状和刚度在基本振动周期内的影响。然后将这些方程与其他研究人员推荐的方程进行比较。

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