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Novel hardware and software combination for automotive motorsport vehicles based on direct processing of graphical functions =

机译:基于图形功能的直接处理的用于汽车赛车的新型硬件和软件组合=

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摘要

The main motivation for the work presented here began with previously conducted experiments with a programming concept at the time named "Macro". These experiments led to the conviction that it would be possible to build a system of engine control from scratch, which could eliminate many of the current problems of engine management systems in a direct and intrinsic way. It was also hoped that it would minimize the full range of software and hardware needed to make a final and fully functional system. Initially, this paper proposes to make a comprehensive survey of the state of the art in the specific area of software and corresponding hardware of automotive tools and automotive ECUs. Problems arising from such software will be identified, and it will be clear that practically all of these problems stem directly or indirectly from the fact that we continue to make comprehensive use of extremely long and complex "tool chains". Similarly, in the hardware, it will be argued that the problems stem from the extreme complexity and inter-dependency inside processor architectures. The conclusions are presented through an extensive list of "pitfalls" which will be thoroughly enumerated, identified and characterized. Solutions will also be proposed for the various current issues and for the implementation of these same solutions. All this final work will be part of a "proof-of-concept" system called "ECU2010". The central element of this system is the before mentioned "Macro" concept, which is an graphical block representing one of many operations required in a automotive system having arithmetic, logic, filtering, integration, multiplexing functions among others. The end result of the proposed work is a single tool, fully integrated, enabling the development and management of the entire system in one simple visual interface. Part of the presented result relies on a hardware platform fully adapted to the software, as well as enabling high flexibility and scalability in addition to using exactly the same technology for ECU, data logger and peripherals alike. Current systems rely on a mostly evolutionary path, only allowing online calibration of parameters, but never the online alteration of their own automotive functionality algorithms. By contrast, the system developed and described in this thesis had the advantage of following a "clean-slate" approach, whereby everything could be rethought globally. In the end, out of all the system characteristics, "LIVE-Prototyping" is the most relevant feature, allowing the adjustment of automotive algorithms (eg. Injection, ignition, lambda control, etc.) 100% online, keeping the engine constantly working, without ever having to stop or reboot to make such changes. This consequently eliminates any "turnaround delay" typically present in current automotive systems, thereby enhancing the efficiency and handling of such systems.
机译:此处介绍的工作的主要动机是从以前进行的实验开始的,当时的实验采用的编程概念是“宏”。这些实验使人们相信,有可能从头开始构建发动机控制系统,从而可以直接和固有的方式消除许多当前的发动机管理系统问题。还希望它将最大程度地减少制作最终功能齐全的系统所需的全部软件和硬件。最初,本文建议对汽车工具和汽车ECU的软件和相应硬件的特定领域中的最新技术进行全面调查。将会识别出由此类软件引起的问题,并且很明显,实际上,所有这些问题都直接或间接地源于我们继续广泛使用极其长而复杂的“工具链”这一事实。类似地,在硬件中,将争辩说问题源于处理器体系结构内部的极端复杂性和相互依赖性。通过广泛的“陷阱”表述结论,这些陷阱将被彻底列举,确定和表征。还将针对当前的各种问题以及这些相同解决方案的实施提出解决方案。所有这些最终工作将成为名为“ ECU2010”的“概念验证”系统的一部分。该系统的中心元素是前面提到的“宏”概念,它是一个图形模块,表示具有算术,逻辑,滤波,积分,多路复用功能的汽车系统所需的许多操作之一。拟议工作的最终结果是一个完全集成的单一工具,从而可以在一个简单的可视界面中开发和管理整个系统。呈现的结果的一部分依赖于完全适合该软件的硬件平台,并且除了对ECU,数据记录器和外围设备使用完全相同的技术之外,还具有很高的灵活性和可扩展性。当前的系统主要依靠进化途径,仅允许在线校准参数,而不能在线更改其自身的汽车功能算法。相比之下,本文开发和描述的系统具有遵循“干净的方法”的优点,因此可以在全球范围内重新考虑所有问题。最后,在所有系统特征中,“实时原型制作”是最相关的功能,可以在线100%调整汽车算法(例如,喷射,点火,λ控制等),从而保持发动机持续运转,而不必停止或重新启动即可进行此类更改。因此,这消除了当前汽车系统中通常存在的任何“周转延迟”,从而提高了此类系统的效率和处理能力。

著录项

  • 作者

    Kulzer, Pedro Manuel Casal.;

  • 作者单位

    Universidade de Aveiro (Portugal).;

  • 授予单位 Universidade de Aveiro (Portugal).;
  • 学科 Computer science.;Automotive engineering.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 356 p.
  • 总页数 356
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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