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Towards Integrating Undependable Self-Adaptive Systems in Safety-Critical Environments

机译:致力于在安全关键环境中集成非独立自适应系统

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Modern cyber-physical systems (CPS) integrate more and more powerful computing power to master novel applications and adapt to changing situations. A striking example is the recent progression in the automotive market towards autonomous driving. Powerful artificial intelligent algorithms must be executed on high performant parallelized platforms. However, this cannot be employed in a safe way, as the platforms stemming from the consumer electronics (CE) world still lack required dependability and safety mechanisms. In this paper, we present a concept to integrate undependable self-adaptive subsystems into safety-critical environments. For this, we introduce self-adaptation envelopes which manage undependable system parts and integrate within a dependable system. We evaluate our approach by a comprehensive case study of autonomous driving. Thereby, we show that the potential failures of the AUTOSAR Adaptive platform as exemplary undependable system can be handled by our concept. In overall, we outline a way of integrating inherently undependable adaptive systems into safety-critical CPS.
机译:现代网络物理系统(CPS)集成了越来越强大的计算能力,以掌握新颖的应用程序并适应不断变化的情况。一个显着的例子是汽车市场最近向自动驾驶发展。强大的人工智能算法必须在高性能并行平台上执行。但是,由于源自消费电子(CE)世界的平台仍缺乏所需的可靠性和安全性机制,因此不能以安全的方式使用它。在本文中,我们提出了一种概念,可以将不可靠的自适应子系统集成到安全关键的环境中。为此,我们引入了自适应信封,用于管理不可靠的系统部件并集成到可靠的系统中。我们通过对自动驾驶进行全面的案例研究来评估我们的方法。因此,我们表明,可以通过我们的概念来解决作为示例性非独立系统的AUTOSAR自适应平台的潜在故障。总体而言,我们概述了一种将本质上不依赖的自适应系统集成到对安全至关重要的CPS中的方法。

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