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A structured design approach to torque-based direct injection spark ignition (DISI) control system design

机译:基于扭矩的直喷火花点火(DISI)控制系统设计的结构化设计方法

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The analytical design of a control system for a highly complex, event-based system, the internal combustion engine (ICE), is a task much simplified by the use of a structured design methodology in a simulation-based environment. This task is further complicated in the next generation of ICEs, direct injection spark ignition, with new interactions and new hardware to control, and a new torque-based architecture. The use of hand-written code for this whole process is too time-consuming and error-prone. The benefits of simulation allow a platform for rapid algorithmic iterations, real-time implementation of rapid control prototyping (RCP) and, ultimately, autocoding for production. Once the control system architecture has been decided, it can be broken down into version-controlled components called features. When these have been designed and implemented, they can be executed in a test harness and modifications made. An application builder combines these control system components into a final build which is executed in real time, controlling the engine. For further diagnosis, real-time test data can be executed as a trajectory through the test harness to replicate problems. Example control system components are studied. These show the crank-based and time-based subcomponent breakdown. Both vehicle and simulation data are presented.
机译:高度复杂的基于事件的系统(内燃机)的控制系统的分析设计是一项任务,通过在基于仿真的环境中使用结构化设计方法,可以大大简化该任务。在下一代ICE,直接喷射火花点火,新的交互作用和新的要控制的硬件以及新的基于扭矩的体系结构中,该任务变得更加复杂。在整个过程中使用手写代码太耗时且容易出错。仿真的好处为快速算法迭代,实时执行快速控制原型(RCP)以及最终实现生产自动编码提供了平台。一旦确定了控制系统的体系结构,就可以将其分解为版本控制的组件,称为功能。在设计和实现这些功能后,可以在测试工具中执行它们并进行修改。应用程序构建器将这些控制系统组件组合到最终的构建中,该构建实时执行并控制引擎。为了进一步诊断,可以将实时测试数据作为轨迹通过测试工具执行,以复制问题。研究了示例控制系统组件。这些显示了基于曲柄和基于时间的子组件细分。车辆和仿真数据都被呈现。

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