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Optimal Design of Vehicle Power-train Mounting System Based on Improved Particle Swarm Optimization

机译:基于改进粒子群算法的车辆动力总成悬置系统优化设计

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Applying the multi-dynamic theory,a dynamic model of the power-train mounting system of motor vehicles is established.An optimization model for the power-train mounting system is constructed,in which decoupling efficiency of six freedom vibrations is selected as objective function,and the natural frequency distribution of system as constraint condition,the stiffness and installing angles as design variables of optimization.Based on improved particle swarm optimization,as an example,isolation characteristics of a truck power-train mounting system are analyzed.The comparison between the optimal and original design shows that distribution of both the modal kinetic energy and the system natural frequency are more reasonable,that means NVH of the power-train mount system can be improved using the optimal design.
机译:应用多动力学理论,建立了汽车动力总成安装系统的动力学模型。建立了动力总成安装系统的优化模型,以六自由度振动的解耦效率为目标函数,以系统的固有频率分布为约束条件,以刚度和安装角度为优化设计变量。以改进的粒子群算法为例,分析了卡车动力总成悬置系统的隔振特性。最优和原始设计表明,模态动能和系统固有频率的分配都更加合理,这意味着采用最优设计可以改善动力总成悬置系统的NVH。

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