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An Integrated Approach Enabling Cross-Domain Simulation of Model-Based E/E-Architectures

机译:一种集成方法,实现基于模型的E / E架构的跨域模拟

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The increasing complexity of electric/electronic architectures (EEA) in the automotive domain raised the necessity of model-based development processes for the design of such heterogeneous systems, which combine different engineering principles with different viewpoints. High-level simulation is a great means to evaluate the EEA in the concept phase of the design, since it reduces costly real-world experiments. However, model-based EEA design and analysis as well as its simulation are often separate processes in the development lifecycle. In this paper, we present a novel approach that extends state-of-the-art model-based systems engineering principles of EEA by a behavior specification reusing library components. The specification is seamlessly integrated in the development process of a single source EEA model. Therewith, the starting point is the abstract logical function architecture of the EEA. Based on this single source EEA model we synthesize a unified high-level simulation model, which is capable of linking the behavioral model with lower level implementation details of other domains, e.g. the network communication of the underlying hardware topology. This cross-layer simulation enables an early but holistic system’s behavior analysis of the dynamic changes which typically depend on the scenarios applied. Moreover, the integrated approach enables the potential to feedback the simulation results into suitable EEA metrics and benchmarks for further analysis and optimization as well as the seamless traceability of the behavioral specification to requirements and other abstraction layers. A driver assistance system use case demonstrates the proof-of-concept and the benefits of our methodology.
机译:汽车域中的电/电子架构(EEA)的复杂性越来越复杂地提出了基于模型的开发过程的必要性,为这种异构系统的设计,这将不同的工程原则与不同的观点相结合。高级别模拟是评估设计概念阶段的EEA的一种很好的方法,因为它降低了昂贵的现实实验。但是,基于模型的EEA设计和分析以及其仿真通常是开发生命周期中的单独流程。在本文中,我们提出了一种新的方法,其通过行为规范重用库组件扩展了基于最先进的模型的系统工程原理。该规范无缝集成在单一源EEA模型的开发过程中。从此,起点是EEA的抽象逻辑函数体系结构。基于该单一源EEA模型,我们合成统一的高级仿真模型,该模型能够将行为模型与其他域的较低级别实现细节联系起来,例如,底层硬件拓扑的网络通信。这种跨层仿真使得能够早期但整体系统的行为分析,其动态变化通常取决于所应用的场景。此外,综合方法使得能够将模拟结果反馈到适当的EEA指标和基准,以进行进一步的分析和优化,以及行为规范对要求和其他抽象层的无缝可追溯性。驾驶员辅助系统用例展示了概念证明和方法的好处。

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