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首页> 外文期刊>Journal of Sound and Vibration >Interval dynamic response analysis of vehicle-bridge interaction system with uncertainty
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Interval dynamic response analysis of vehicle-bridge interaction system with uncertainty

机译:具有不确定性的车桥相互作用系统的区间动力响应分析

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Interval dynamic response analysis of vehicle-bridge interaction system with uncertain parameters is studied in this paper. The bridge's and vehicle's parameters are considered as interval variables. A half-car model is used to represent a moving vehicle and the bridge is assumed as a simply supported Euler-Bernoulli beam. By introducing the interval algorithm into the dynamic analysis of vehicle-bridge interaction system, the expressions of the midpoint value, interval width, lower and upper bounds of interval bridge dynamic response are developed. The lower and upper bounds are respectively the minimum and maximum values of bridge dynamic response, which can also be determined by optimization approaches. A heuristic optimization method, a new particle swarm optimization method with low-discrepancy sequence initialized particles and high-order nonlinear time-varying inertia weight and constant acceleration coefficients (LHNPSO), is then developed to find the bounds of bridge displacement. Examples are used to illustrate the effectiveness of the presented methods and Monte-Carlo simulations are implemented to validate the computational results. The effects of individual system parameters on bridge response are also investigated.
机译:研究了参数不确定的车桥相互作用系统的区间动力响应分析。桥梁和车辆的参数被视为间隔变量。半车模型用于表示行驶中的车辆,并且桥梁被假定为简单支撑的Euler-Bernoulli梁。通过将区间算法引入到车桥相互作用系统的动力学分析中,得出了区间桥梁动力响应的中点值,区间宽度,上下限的表达式。下限和上限分别是桥梁动态响应的最小值和最大值,也可以通过优化方法来确定。然后,开发一种启发式优化方法,即一种新的具有低差异序列初始化粒子,高阶非线性时变惯性权重和恒定加速度系数(LHNPSO)的粒子群优化方法,以寻找桥梁位移的边界。实例用于说明所提出方法的有效性,并实施了蒙特卡洛仿真以验证计算结果。还研究了各个系统参数对桥梁响应的影响。

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