Analyses and Architectures for Mixed-Critical Systems: Industry Trends and Research Perspective Special Session Extended Abstract

L. Bauer, Marvin Damschen, D. Ziegenbein, A. Hamann, Alessandro Biondi, G. Buttazzo, J. Henkel
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引用次数: 2

Abstract

The ongoing Cyber-Physical Systems (CPS) and Internet of Things (IoT) revolution is leading to the ubiquity of applications with real-time requirements. In traditional real-time applications, dedicated and isolated systems were built for each safety-critical functionality, but this paradigm no longer suits emerging applications. The auto-motive industry is a prime example of a domain that is currently undergoing the radical shift to integrated mixed-criticality systems. A heterogeneous mix of applications with diverse requirements in terms of timing and safety criticality is run on hardware platforms that are increasingly heterogeneous, including specialized hardware accelerators. Examples of such systems are provided in this special session along with reviews of challenges and current research directions in industry. Ways to utilize the performance of application-specific accelerators while maintaining the system’s flexibility using runtime reconfiguration are presented. It will benefit university researchers/professors, students, industry professionals, and computing system designers who are interested in working on mixed-critical systems. CCS CONCEPTS • Computer systems organization → Real-time system architecture; • Hardware → Hardware accelerators.
混合关键系统的分析和架构:行业趋势和研究前景
正在进行的网络物理系统(CPS)和物联网(IoT)革命正在导致具有实时需求的应用无处不在。在传统的实时应用程序中,为每个安全关键功能构建专用和隔离的系统,但这种模式不再适合新兴应用程序。汽车行业是一个典型的例子,目前正经历着向集成混合临界系统的彻底转变。在时间和安全关键性方面具有不同需求的应用程序的异质混合运行在越来越异质的硬件平台上,包括专用硬件加速器。本次特别会议将提供此类系统的实例,并对工业中的挑战和当前研究方向进行回顾。提出了利用特定应用程序加速器性能的方法,同时使用运行时重构保持系统的灵活性。它将使对混合关键系统感兴趣的大学研究人员/教授、学生、行业专业人员和计算系统设计人员受益。•计算机系统组织→实时系统架构;•硬件→硬件加速器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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