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首页> 外文期刊>Advances in software engineering >A Multi-Layered Control Approach for Self-Adaptation in Automotive Embedded Systems
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A Multi-Layered Control Approach for Self-Adaptation in Automotive Embedded Systems

机译:汽车嵌入式系统中自适应的多层控制方法

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We present an approach for self-adaptation in automotive embedded systems using a hierarchical, multi-layered control approach. We model automotive systems as a set of constraints and define a hierarchy of control loops based on different criteria. Adaptations are performed at first locally on a lower layer of the architecture. If this fails due to the restricted scope of the control cycle, the next higher layer is in charge of finding a suitable adaptation. We compare different options regarding responsibility split in multi-layered control in a self-healing scenario with a setup adopted from automotive in-vehicle networks. We show that a multi-layer control approach has clear performance benefits over a central control, even though all layers work on the same set of constraints. Furthermore, we show that a responsibility split with respect to network topology is preferable over a functional split.
机译:我们提出了一种使用分层,多层控制方法在汽车嵌入式系统中进行自适应的方法。我们将汽车系统建模为一组约束,并根据不同的标准定义控制回路的层次结构。适应首先在体系结构的较低层上本地执行。如果由于控制周期的限制而导致失败,则下一个更高的层负责找到合适的适配。我们将自愈方案中多层控制中责任分配的不同选项与汽车车载网络采用的设置进行了比较。我们表明,即使所有层都在同一组约束上工作,多层控制方法也比中央控制具有明显的性能优势。此外,我们表明,相对于功能划分,相对于网络拓扑的责任划分更为可取。

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