利用系统动力学进行资源高效汽车CPS设计

L. Maldonado, Wanli Chang, Debayan Roy, A. Annaswamy, Dip Goswami, S. Chakraborty
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引用次数: 7

摘要

汽车嵌入式系统对安全性至关重要,同时对成本也非常敏感。前者需要考虑到最坏情况的资源维度,即使这种情况很少发生,而这与后一种要求相冲突。为了同时管理这两个方面,正在探索的一个研究方向是根据不同任务的需求和优先级动态分配混合资源。沿着这个方向,在本文中,我们表明,通过适当地建模汽车控制软件与之交互的系统的物理动力学,可以更好地节省资源,同时仍然保证安全性能。为此,我们将重点放在使用汽车FlexRay总线的分布式控制器实现上。我们的方法结合了时间/可调度性分析和控制理论的技术,并显示了在网络物理系统(CPS)设计范式中协同结合网络组件和物理过程的重要性。
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Exploiting System Dynamics for Resource-Efficient Automotive CPS Design
Automotive embedded systems are safety-critical, while being highly cost-sensitive at the same time. The former requires resource dimensioning that accounts for the worst case, even if such a case occurs infrequently, while this is in conflict with the latter requirement. In order to manage both of these aspects at the same time, one research direction being explored is to dynamically assign a mixture of resources based on needs and priorities of different tasks. Along this direction, in this paper we show that by properly modeling the physical dynamics of the systems that an automotive control software interacts with, it is possible to better save resources while still guaranteeing safety properties. Towards this, we focus on a distributed controller implementation that uses an automotive FlexRay bus. Our approach combines techniques from timing/schedulability analysis and control theory and shows the significance of synergistically combining the cyber component and physical processes in the cyber-physical systems (CPS) design paradigm.
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