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An interdisciplinary review on calibration strategies of engine management system for diverse alternative fuels in IC engine applications

机译:IC发动机应用中不同替代燃料发动机管理系统校准策略的跨学科综述

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摘要

As the vehicle technology evolves and becomes more complex, the ability to monitor certain uncontrollable factors is possible through various engine management system calibration methods. Additionally, different optimization approaches assist in improving engine output characteristics. Advances in fuel production from unique feedstocks have paved a way for the introduction of innovative flex-fuel engines. These engines are made mull-fuel adaptive by utilizing appropriate calibration and optimization approaches. Since numerous researches have been carried out in internal combustion engine calibration, operating on alternative fuels, it is quite hard to maintain a record for this wealth of information. Therefore to bridge this issue, this study intends to organize and provide the reader with a retrospective view of selective studies undergone in the field of engine calibration using different tuning techniques. The objective of this study is to assist engine calibration enthusiasts on selecting an apt engine calibration technique for their application which can be flexible for multiple fuel types. Studies revealed that model-based calibration assisted by Gaussian process modelling and Design of Experiment application is adequate for calibrating an engine operating on alternative fuels. Additionally, calibration methodologies followed for certain fuel types and compositions are highlighted in detail. Furthermore, an advanced calibration methodology is proposed for flex-fuel engines in this study based on the knowledge gained through the preparation of this article. To further enhance accuracy, complex optimizers like neural networks can be used in the proposed methodology to initiate real-time calibration for ideal flex-fuel engine output responses.
机译:随着车辆技术的发展和变得更复杂,通过各种发动机管理系统校准方法可以监测某些无法控制的因素的能力。另外,不同的优化方法有助于提高发动机输出特性。独特原料燃料生产的进步已经为引入创新的弯曲燃料发动机铺平了一种方法。通过利用适当的校准和优化方法,使这些发动机进行Mull-File自适应。由于在内燃机校准中进行了许多研究,因此在替代燃料上运行,因此很难维持这一丰富信息的记录。因此,为了弥合这个问题,本研究旨在通过不同的调谐技术在发动机校准领域内部进行组织和提供读者的选择性研究。本研究的目的是协助发动机校准爱好者在为其应用中选择APT发动机校准技术,这对于多种燃料类型可以灵活。研究表明,高斯工艺建模和实验应用设计辅助基于模型的校准是足以校准在替代燃料上运行的发动机。此外,详细突出显示某些燃料类型和组合物的校准方法。此外,基于通过制备本文获得的知识,提出了本研究中的柔性燃料发动机的高级校准方法。为了进一步提高准确性,可以在所提出的方法中使用像神经网络这样的复杂优化器,以启动实时校准,以获得理想的柔性燃料发动机输出响应。

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