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Continuous Experimentation for Automotive Software on the Example of a Heavy Commercial Vehicle in Daily Operation

机译:在日常运行中沉重商用车示例的汽车软件连续实验

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As the automotive industry focuses its attention more and more towards the software functionality of vehicles, techniques to deliver new software value at a fast pace are needed. Continuous Experimentation, a practice coming from the web-based systems world, is one of such techniques. It enables researchers and developers to use real-world data to verify their hypothesis and steer the software evolution based on performances and user preferences, reducing the reliance on simulations and guesswork. Several challenges prevent the verbatim adoption of this practice on automotive cyber-physical systems, e.g., safety concerns and limitations from computational resources; nonetheless, the automotive field is starting to take interest in this technique. This work aims at demonstrating and evaluating a prototypical Continuous Experimentation infrastructure, implemented on a distributed computational system housed in a commercial truck tractor that is used in daily operations by a logistic company on public roads. The system comprises computing units and sensors, and software deployment and data retrieval are only possible remotely via a mobile data connection due to the commercial interests of the logistics company. This study shows that the proposed experimentation process resulted in the development team being able to base software development choices on the real-world data collected during the experimental procedure. Additionally, a set of previously identified design criteria to enable Continuous Experimentation on automotive systems was discussed and their validity confirmed in the light of the presented work.
机译:随着汽车行业越来越关注车辆的软件功能,需要以快速节奏提供新的软件价值的技术。连续实验,来自基于网络的系统世界的实践,是这样的技术之一。它使研究人员和开发人员能够使用真实数据来验证他们的假设并根据表演和用户偏好引导软件演变,从而降低对模拟和猜测的依赖。有几项挑战可以防止逐字采用这种做法在汽车网络系统上,例如,从计算资源的安全问题和局限性;尽管如此,汽车领域开始对该技术感兴趣。这项工作的目的是演示和评估原型不断的实验基础设施,坐落在一幢商用卡车牵引车的分布式计算系统,该系统在日常运营由物流公司使用在公共道路上实现。该系统包括计算单元和传感器,并且由于物流公司的商业利益,仅通过移动数据连接远程通过移动数据连接来远程进行软件部署和数据检索。本研究表明,拟议的实验过程导致开发团队能够在实验程序期间收集的现实数据基础上基础的软件开发选择。此外,讨论了一套先前识别的设计标准,以实现汽车系统的连续实验,并根据所提出的工作确认其有效性。

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