悬挂(拓扑)
粒子群优化
背景(考古学)
汽车操纵
振动
汽车工程
计算机科学
控制理论(社会学)
适应(眼睛)
工作(物理)
理论(学习稳定性)
车辆动力学
模拟
工程类
数学
算法
人工智能
机械工程
生物
同伦
机器学习
光学
物理
量子力学
古生物学
纯数学
控制(管理)
作者
Ryan Rodrigues Moreira Resende da Silva,Igor Lucas Reinaldo,Daniel Pinheiro Montenegro,Gustavo Simão Rodrigues,Elias Dias Rossi Lopes
标识
DOI:10.1177/0954407020983057
摘要
The use of optimization methods in engineering is growing, allowing the best possible way to fulfill the requirements of the project. For vehicle suspensions, there are various conditions, which involve comfort, safety, stability, maneuverability, among others. A safety and stability evaluation is carried out by several tests, including Double Lane Change. In this maneuver, the vehicle must change lanes quickly twice, allowing it to be assessed for stability in sudden movements. For ride comfort, it is common for the design to be based on the vehicle’s natural vibration frequencies. In this context, this work aims to present a methodology for optimizing the suspension parameters of a vehicle, based on the natural frequencies of vibration and the simulation of a Double Lane Change maneuver. For that, it is employed vertical and lateral dynamics mathematical models, with hypotheses that allow the adequate adaptation to the represented phenomena. Finally, Particle Swarm Optimization (PSO) is used, which is a stochastic algorithm, based on nature. It has low computational cost, with reasonable results, allowing the parameters to be estimated and comprising the two objectives simultaneously.
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