首页> 外文会议>SAE World Congress Experience >Robust Design Optimization on an Inline Three-Cylinder Engine Balance Shaft with Many Stochastic Variables
【24h】

Robust Design Optimization on an Inline Three-Cylinder Engine Balance Shaft with Many Stochastic Variables

机译:具有许多随机变量的内联三缸发动机平衡轴的鲁棒设计优化

获取原文

摘要

The balance shaft is a countermeasure to reduce the 1st order excitation caused by the crankshaft in inline three-cylinder engine. Its design consists of two main variables, balance mass and angle. These variables need to be tuned so the engine pitch and yaw moments are minimized, which can be achieved by solving a deterministic design optimization problem. However, due to manufacturing tolerances of connecting rods, pistons, and balance shaft itself, the actual vibration level of the optimized balance shaft could fluctuate, and often becomes sub-optimal and even unacceptable. One way of addressing the influence of tolerances on vibration is to conduct a Taguchi parameter design, to pick the optimal settings of balance mass and angle, so the final designs are the least subject to the influence of manufacturing tolerances. Another approach of tackling the robust design issue is to use Robust Design Optimization (RDO), empowered by optimization algorithms, to search for the best nominal values of balance mass and angle. Furthermore, a Reverse-RDO can achieve designs with similar performance as the solutions of RDO but with much looser tolerance values. In this paper, Taguchi parameter design approach is compared with RDO, mainly in terms of overall complexity of procedures, turnaround time, optimal solution quality and efficiency, and easiness of being generalized to other engineering problems. Then the Reverse-RDO is conducted to find alternative optimal designs with much looser manufacturing tolerances. This paper concludes the Multi Objective Robustness Design Optimization (MORDO) and Reverse-MORDO, augmented by Response Surface Models, is preferred and recommended to tackle robustness in competitive product designs.
机译:平衡轴是一种对策,以减少由曲轴引起的曲轴在内联三缸发动机中引起的第一次励磁。其设计包括两个主要变量,平衡质量和角度。这些变量需要调谐,以便最小化发动机间距和偏移时刻,这可以通过解决确定性设计优化问题来实现。然而,由于连杆,活塞和平衡轴本身的制造公差,优化的平衡轴的实际振动水平可能波动,并且通常变得亚最佳,甚至是不可接受的。解决公差对振动的一种方法是进行TAGUCHI参数设计,以选择平衡质量和角度的最佳设置,因此最终设计是最不受制造公差影响的影响。应对强大的设计问题的另一种方法是用稳健设计优化(RDO),通过优化算法授权,寻找平衡质量和角度的最好的标称值。此外,反向RDO可以实现具有与RDO的解决方案相似的性能的设计,而是具有大量宽松的公差值。在本文中,Taguchi参数设计方法与RDO进行了比较,主要是在程序的整体复杂性方面,周转时间,最佳的解决方案质量和效率,以及易于到其他工程问题的方便。然后进行反向RDO以找到具有大量放松的替代最佳设计。本文得出多目标稳健性设计优化(Mordo)和Reverse-Mordo,通过响应面模型增强,是首选,推荐在竞争性产品设计中解决鲁棒性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号