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Analytical target cascading framework for engine calibration optimisation

机译:发动机标定优化的分析目标级联框架

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摘要

This paper presents the development and implementation of an analytical target cascading (ATC) multi-disciplinary design optimisation (MDO) framework for the steady state engine calibration optimisation problem. A case study on variable valve timing calibration for a gasoline engine was considered to illustrate the analysis and mathematical formulation of the calibration optimisation as an ATC framework, and its Matlab implementation with gradient based and evolutionary optimisation algorithms. The results and performance of the ATC are discussed comparatively with the conventional two-stage approach to steady state calibration optimisation. The conclusion is that ATC offers a powerful and efficient approach for engine calibration optimisation, delivering better solutions at both 'Global' and 'Local' levels. The ATC framework is flexible and scalable to the complexity of the calibration problem, and enables calibrator preference to be incorporated a priori in the optimisation problem formulation, delivering important time saving for the overall calibration development process.
机译:本文介绍了稳态发动机标定优化问题的分析目标级联(ATC)多学科设计优化(MDO)框架的开发和实现。以某汽油机可变气门正时校准为例,以ATC框架为例,阐述了校准优化的分析和数学公式,以及基于梯度和进化优化算法的Matlab实现。 ATC的结果和性能与稳态校正的常规两阶段方法进行了比较讨论。结论是,ATC为优化发动机标定提供了一种强大而有效的方法,可在“全球”和“本地”水平上提供更好的解决方案。 ATC框架灵活且可扩展以适应校准问题的复杂性,并且可以将校准器偏好优先纳入优化问题表述中,从而为整个校准开发过程节省大量时间。

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