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Cost effective simulation-based multiobjective optimization in the performance of an internal combustion engine

机译:基于成本效益的基于仿真的多目标内燃机性能优化

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摘要

Solving real-life engineering problems can be difficult because they often have multiple conflicting objectives, the objective functions involved are highly nonlinear and they contain multiple local minima. Furthermore, function values are often produced via a time-consuming simulation process. These facts suggest the need for an automated optimization tool that is efficient (in terms of number of objective function evaluations) and capable of solving global and multiobjective optimization problems. In this article, the requirements on a general simulation-based optimization system are discussed and such a system is applied to optimize the performance of a two-stroke combustion engine. In the example of a simulation-based optimization problem, the dimensions and shape of the exhaust pipe of a two-stroke engine are altered, and values of three conflicting objective functions are optimized. These values are derived from power output characteristics of the engine. The optimization approach involves interactive multiobjective optimization and provides a convenient tool to balance between conflicting objectives and to find good solutions.
机译:解决现实工程问题可能很困难,因为它们通常具有多个相互矛盾的目标,涉及的目标函数是高度非线性的,并且它们包含多个局部最小值。此外,功能值通常是通过耗时的仿真过程产生的。这些事实表明,需要一种自动优化工具,该工具必须高效(就目标函数评估而言),并且能够解决全局和多目标优化问题。在本文中,讨论了对基于通用仿真的优化系统的要求,并将该系统应用于优化二冲程内燃机的性能。在基于模拟的优化问题的示例中,更改了二冲程发动机的排气管的尺寸和形状,并优化了三个相互矛盾的目标函数的值。这些值是从发动机的功率输出特性得出的。优化方法涉及交互式多目标优化,并提供了一种方便的工具来在冲突的目标之间进行平衡并找到良好的解决方案。

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