Associative datafields in automotive control

M. Schmitt, T. Ullrich, H. Tolle
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引用次数: 3

Abstract

This work presents an associative datafield structure that has been developed for automotive control applications by the Institute of Control Engineering, Department of Control Systems Theory and Robotics at the Technical University of Darmstadt and the Robert Bosch GmbH. In contrast to the state-of-the-art lattice-like datafields, the new system permits the modelling of multidimensional nonlinear process and/or controller characteristics with respect to computational performance and storage capacity provided by automotive control units. Furthermore, the associative datafield allows the compensation of wear and tear and manufacturing tolerances by learning, i.e. online adaptation of its contents. The paper describes the principles of the associative datafield and different update algorithms. Results of simulations using realistic data from car engines are discussed.<>
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汽车控制中的关联数据域
这项工作提出了一个由达姆施塔特工业大学控制工程研究所、控制系统理论和机器人学系和罗伯特·博世公司为汽车控制应用开发的关联数据场结构。与最先进的格状数据场相比,新系统允许对多维非线性过程和/或与汽车控制单元提供的计算性能和存储容量相关的控制器特性进行建模。此外,关联数据场允许通过学习来补偿磨损和制造公差,即在线调整其内容。本文介绍了关联数据场的原理和不同的更新算法。讨论了汽车发动机实际数据的仿真结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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