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Model-based Control of Automotive Engines and After-treatment Devices

机译:基于模型的汽车发动机和后处理装置控制

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As environmental requirements on automotive vehicle emissions have steadily increased over the last decades, embedded control technology to perform real-time management of the driver's requests has appeared as a key technology and has become ubiquitous. Today, every subsystem that is found under the hood is controlled, most often in closed-loop mode. A key factor in the development of a new engine or a new vehicle is the duration of its design cycle. The design and tuning of all the intricate control loops is very time-consuming. One of the main reasons for this is that tuning procedures are often used to compensate for certain un-modeled effects such as neglected couplings of dynamic variables. In this talk, we explain how models can be used to reduce expensive calibration time significantly. As will be shown in the light of several experiments (involving airpath, fuelpath, and after-treatment systems), simple models bring effective and practical solutions involving mature tools from nonlinear control theory.
机译:由于对汽车车辆排放的环境要求在过去十年中稳步增加,嵌入式控制技术执行驾驶员请求的实时管理已经出现为一个关键技术,并且已成为无处不在的。如今,在引擎盖下发现的每个子系统都被控制,最常见于闭环模式。开发新发动机或新车辆的关键因素是其设计周期的持续时间。所有复杂控制环的设计和调整都非常耗时。其中一个主要原因是调谐过程通常用于补偿某些未建模的效果,例如被忽略的动态变量的耦合。在这次谈话中,我们解释了如何使用模型来减少昂贵的校准时间。如将鉴于几种实验(涉及航空,燃料路径和后处理系统),简单的模型带来了涉及来自非线性控制理论的成熟工具的有效和实用的解决方案。

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