Advances and challenges of quantitative verification and synthesis for cyber-physical systems

Marta Z. Kwiatkowska
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引用次数: 4

Abstract

We are witnessing a huge growth of cyber-physical systems, which are autonomous, mobile, endowed with sensing, controlled by software, and often wirelessly connected and Internet-enabled. They include factory automation systems, robotic assistants, self-driving cars, and wearable and implantable devices. Since they are increasingly often used in safety- or business-critical contexts, to mention invasive treatment or biometric authentication, there is an urgent need for modelling and verification technologies to support the design process, and hence improve the reliability and reduce production costs. This paper gives an overview of quantitative verification and synthesis techniques developed for cyber-physical systems, summarising recent achievements and future challenges in this important field.
信息物理系统定量验证与综合的进展与挑战
我们正在目睹网络物理系统的巨大增长,这些系统是自主的、移动的、具有传感功能的、由软件控制的,通常是无线连接和支持互联网的。它们包括工厂自动化系统、机器人助手、自动驾驶汽车以及可穿戴和植入式设备。由于它们越来越多地用于安全或业务关键环境,例如侵入性治疗或生物识别认证,因此迫切需要建模和验证技术来支持设计过程,从而提高可靠性并降低生产成本。本文概述了为信息物理系统开发的定量验证和综合技术,总结了这一重要领域的最新成就和未来挑战。
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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