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Designing a Human Machine Interface for Quality Assurance in Car Manufacturing: An Attempt to Address the “Functionality versus User Experience Contradiction” in Professional Production Environments

机译:设计人机界面以确保汽车制造的质量:尝试解决专业生产环境中的“功能与用户体验矛盾”

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The complexity of nowadays car manufacturing processes increases constantly due to the increasing number of electronic and digital features in cars as well as the shorter life cycle of car designs, which raises the need for faster adaption to new car models. However, the ongoing digitalization of production and working contexts offers the chance to support the worker in production using digital information as well as innovative, interactive, and digital devices. Therefore, in this work we investigate a representative production step in a long-term project together with a German car manufacturer, which is structured into three phases. In the first phase, we investigated the working process empirically and developed a comprehensive and innovative user interface design, which addresses various types of interactive devices. Building up on this, we developed the device score model, which is designed to investigate interactive system and user interface in production context due to ergonomics, UI design, performance, technology acceptance, and user experience. This work was conducted in the second phase of the project, in which we used this model to investigate the subjective suitability of six innovative device setups that implement the user interface design developed in phase one in an experimental setup with 67 participants at two locations in south Germany. The major result showed that the new user interface design run on a smart phone is the most suitable setup for future interactive systems in car manufacturing. In the third and final phase, we investigated the suitability of the two best rated devices for long term use by two workers using the system during a full shift. These two systems were compared with the standard system used. The major conclusion is that smartphones as well as AR glasses show very high potential to increase performance in production if used in a well-designed fashion.
机译:由于汽车中电子和数字功能的数量不断增加,以及汽车设计的生命周期越来越短,当今汽车制造工艺的复杂性不断增加,这使得人们需要更快地适应新的汽车模型。但是,生产和工作环境的持续数字化提供了使用数字信息以及创新,交互式和数字设备为工人提供生产支持的机会。因此,在这项工作中,我们与德国汽车制造商一起研究了一个长期项目中具有代表性的生产步骤,该过程分为三个阶段。在第一阶段,我们以经验方式研究了工作过程,并开发了一种全面创新的用户界面设计,该界面可以处理各种类型的交互式设备。在此基础上,我们开发了设备评分模型,该模型旨在根据人机工程学,UI设计,性能,技术接受度和用户体验来研究生产环境中的交互式系统和用户界面。这项工作是在项目的第二阶段中进行的,在该阶段中,我们使用此模型调查了六个创新设备设置的主观适用性,这些设备实现了第一阶段开发的用户界面设计,该设置在实验设置中位于南部两个位置,共有67名参与者德国。主要结果表明,在智能手机上运行的新用户界面设计是未来汽车制造中的交互式系统的最合适设置。在第三个也是最后一个阶段,我们调查了两个最佳额定值的设备是否适合两名工人在全班工作期间使用该系统进行长期使用。将这两个系统与使用的标准系统进行了比较。主要结论是,如果以精心设计的方式使用智能手机以及AR眼镜,它们在提高生产性能方面显示出很高的潜力。

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