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首页> 外文期刊>SAE International Journal of Passenger Cars - Electronic and Electrical Systems >Methods and Tools for Calculating the Flexibility of Automotive HW/SW Architectures
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Methods and Tools for Calculating the Flexibility of Automotive HW/SW Architectures

机译:计算汽车硬件/软件架构灵活性的方法和工具

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To cope with the increasing number of advanced features (e.g., smart-phone integration and side-blind zone alert.) being deployed in vehicles, automotive manufacturers are designing flexible hardware architectures which can accommodate increasing feature content with as fewer as possible hardware changes so as to keep future costs down. In this paper, we propose a formal and quantitative definition of flexibility, a related methodology and a tool flow aimed at maximizing the flexibility of an automotive hardware architecture with respect to the features that are of greater importance to the designer. We define flexibility as the ability of an architecture to accommodate future changes in features with no changes in hardware (no addition/replacement of processors, buses, or memories). We utilize an optimization framework based on mixed integer linear programming (MILP) which computes the flexibility of the architecture while guaranteeing performance and safety requirements.
机译:为了应对在车辆中部署的越来越多的高级功能(例如,智能电话集成和侧盲区域警报),汽车制造商正在设计灵活的硬件体系结构,以最少的硬件更改即可容纳不断增加的功能,因此以降低未来的成本。在本文中,我们提出了关于灵活性的正式和定量定义,一种相关的方法论以及一种工具流程,旨在针对对设计人员而言更为重要的功能最大化汽车硬件架构的灵活性。我们将灵活性定义为体系结构在不更改硬件(无需添加/更换处理器,总线或内存)的情况下适应将来功能变化的能力。我们利用基于混合整数线性规划(MILP)的优化框架,该框架在保证性能和安全性要求的同时计算体系结构的灵活性。

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