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Software Engineering for Smart Cyber-Physical Systems: Models, System-Environment Boundary, and Social Aspects

机译:智能网络物理系统的软件工程:模型,系统环境边界和社会方面

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Smart Cyber-Physical Systems (sCPS) are a novel kind of Cyber-Physical Systems engineered to take advantage of large-scale cooperation between devices, users and environment to achieve added value in face of uncertainty and various situations in their environment. Examples of sCPS include modern traffic systems, Industry 4.0 systems, systems for smart-buildings, smart energy grids, etc. The uniting aspect of all these systems is that to achieve their high-level of intelligence, adaptivity and ability to optimize and learn, they heavily rely on software. This makes them software-intensive systems, where software becomes their most complex part. Engineering sCPS thus becomes a recognized software engineering discipline, which however, due to specifics of sCPS, can only partially rely on the existing body of knowledge in software engineering. In fact, it turns out that many of the traditional approaches to architecture modeling and software development fail to cope with the high dynamicity and uncertainty of sCPS. This calls for innovative approaches that jointly reflect and address the specifics of such systems. This paper maps the discussions and results of the Third International Workshop on Software Engineering for Smart Cyber-Physical Systems (SEsCPS 2017), which specifically focuses on challenges and promising solutions in the area of software engineering for sCPS.
机译:智能网络物理系统(sCPS)是一种新型的网络物理系统,旨在利用设备,用户和环境之间的大规模合作来面对不确定性和环境中的各种情况实现增值。 sCPS的示例包括现代交通系统,工业4.0系统,智能建筑系统,智能能源网格等。所有这些系统的统一之处是要实现其高水平的智能,适应性以及优化和学习,他们严重依赖软件。这使它们成为软件密集型系统,其中软件成为它们最复杂的部分。工程sCPS因此成为公认的软件工程学科,但是,由于sCPS的特殊性,它只能部分地依赖于软件工程中的现有知识体系。实际上,事实证明,许多传统的架构建模和软件开发方法都无法应对sCPS的高动态性和不确定性。这就需要创新的方法来共同反映和解决此类系统的具体问题。本文概述了第三届智能网络物理系统软件工程国际研讨会(SEsCPS 2017)的讨论和结果,该研讨会特别关注sCPS软件工程领域的挑战和有希望的解决方案。

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