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Designing optimal control maps for diesel engines for high efficiency and emission reduction

机译:设计柴油发动机的最佳控制图,以实现高效率和减排

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The objective of this paper is to design static optimal control maps of diesel engines to achieve high efficiency and emission reduction. The calibration tool applied to create the control maps, named “Off-line parameterization tool”, was designed based on the Design of Experiments method. The optimization goal is to minimize the Brake Specific Fuel Consumption (BSFC) by the engine's input parameters under emission constraints. The tool was designed to work both fully automatically and semi-automatically. Many reports on engine calibration have taken the Design of Experiments (DoE) approach, but their implementations in choosing experimental design types and optimization processes are different compared to this paper. The unique aspect of this research lies in the significant properties of the Off-line parameterization tool. First, this tool is flexible: it is able to work with multiple inputs and multiple outputs. Second, it can reduce the calibration time as the engine running time is kept as short as possible and all the data processing work is accomplished automatically.
机译:本文的目的是设计柴油机的静态最优控制图,以实现高效率和减排。基于“实验设计”方法设计了用于创建控制图的校准工具,称为“离线参数化工具”。优化目标是在排放限制条件下,通过发动机的输入参数将制动比燃油消耗(BSFC)降至最低。该工具旨在完全自动和半自动运行。许多有关发动机校准的报告都采用了实验设计(DoE)方法,但是与本文相比,它们在选择实验设计类型和优化过程方面的实现方式有所不同。这项研究的独特之处在于离线参数化工具的重要属性。首先,该工具非常灵活:它可以处理多个输入和多个输出。其次,它可以缩短校准时间,因为发动机的运行时间应尽可能短,并且所有数据处理工作都可以自动完成。

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