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Study on Parameter Optimization Design of Drum Brake Based on Hybrid Cellular Multiobjective Genetic Algorithm

机译:基于混合细胞多目标遗传算法的鼓式制动器参数优化设计研究

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摘要

In consideration of the significant role the brake plays in ensuring the fast and safe running of vehicles, and since the present parameter optimization design models of brake are far from the practical application, this paper proposes a multiobjective optimization model of drum brake, aiming at maximizing the braking efficiency and minimizing the volume and temperature rise of drum brake. As the commonly used optimization algorithms are of some deficiency, we present a differential evolution cellular multiobjective genetic algorithm (DECell) by introducing differential evolution strategy into the canonical cellular genetic algorithm for tackling this problem. For DECell, the gained Pareto front could be as close as possible to the exact Pareto front, and also the diversity of nondominated individuals could be better maintained. The experiments on the test functions reveal that DECell is of good performance in solving high-dimension nonlinear multiobjective problems. And the results of optimizing the new brake model indicate that DECell obviously outperforms the compared popular algorithm NSGA-II concerning the number of obtained brake design parameter sets, the speed, and stability for finding them.
机译:考虑到制动器在保证车辆快速安全行驶中的重要作用,由于目前的制动器参数优化设计模型与实际应用相去甚远,因此本文提出了一种鼓式制动器的多目标优化模型,旨在最大化制动性能。制动效率,并使鼓式制动器的体积和温升最小化。由于常用的优化算法存在一些不足,我们通过将差分进化策略引入规范的蜂窝遗传算法中来解决这种问题,从而提出一种差分进化蜂窝多目标遗传算法(DECell)。对于DECell,获得的Pareto前沿可能与精确的Pareto前沿尽可能接近,并且可以更好地保持非支配个体的多样性。对测试函数的实验表明,DECell在解决高维非线性多目标问题方面具有良好的性能。优化新制动器模型的结果表明,在获得的制动器设计参数集的数量,找到它们的速度和稳定性方面,DECell明显优于比较流行的算法NSGA-II。

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  • 来源
    《Mathematical Problems in Engineering》 |2012年第12期|734193.1-734193.23|共23页
  • 作者

    Yi Zhang; Hu Zhang; Chao Lu;

  • 作者单位

    Hubei Key Laboratory of Hydroelectric Machinery Design & Maintenance, China Three Gorges University, Yichanv 44300, China;

    Hubei Key Laboratory of Hydroelectric Machinery Design & Maintenance, China Three Gorges University, Yichanv 44300, China;

    Hubei Key Laboratory of Hydroelectric Machinery Design & Maintenance, China Three Gorges University, Yichanv 44300, China;

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