用于调试网络物理系统的断言框架

Kevin Boos, Chien-Liang Fok, C. Julien, Miryung Kim
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引用次数: 5

摘要

开发网络物理系统(CPS)是具有挑战性的,因为正确性依赖于逻辑和物理状态,这两者很难共同观察。开发人员经常需要反复地重新运行系统,同时观察其行为,并调整硬件和软件,直到它满足最低要求。这个过程冗长乏味,容易出错,而且缺乏严谨性。为了解决这个问题,我们提出了BRACE,这是一个框架,通过使开发人员能够通过断言将系统的网络(即逻辑)和物理属性关联起来,从而简化了流程。本文介绍了我们对这种断言(我们称之为CPS断言)的需求和语义的初步研究。我们讨论了在移动机器人上实施和使用该框架的经验,并强调了未来研究的关键挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
BRACE: An assertion framework for debugging cyber-physical systems
Developing cyber-physical systems (CPS) is challenging because correctness depends on both logical and physical states, which are collectively difficult to observe. The developer often need to repeatedly rerun the system while observing its behavior and tweak the hardware and software until it meets minimum requirements. This process is tedious, error-prone, and lacks rigor. To address this, we propose BRACE, A framework that simplifies the process by enabling developers to correlate cyber (i.e., logical) and physical properties of the system via assertions. This paper presents our initial investigation into the requirements and semantics of such assertions, which we call CPS assertions. We discusses our experience implementing and using the framework with a mobile robot, and highlight key future research challenges.
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