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Feature model for the specification of industrial indoor location-based services

机译:用于室内工业位置服务规范的特征模型

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The rapid evolution of information technology is the driving force behind the ongoing digital transformation. Ubiquitous communication devices and digital services have become an essential part in most of our lives. Context-awareness enables convenient new forms of interaction and instant delivery of relevant information for a given situation. IT services that provide a benefit to the user based on their current position or the position of another entity, are known as location-based services (LBS). In the context of the ongoing digitization of the manufacturing industry, LBS have the potential to improve processes on the shop floor and in the office environment. Unlike in the B2C sector, however, LBS have not yet found a solid foothold in industrial environments due to a number of barriers hindering the implementation. The main barrier is the lack of a standard indoor positioning solution, which is required for an indoor localization. As a result, the implementation of indoor LBS requires a tailored system comprising an appropriate indoor positioning technology, computational infrastructure as well as compatible software solutions. During the specification phase, it is necessary to evaluate the initial situation and existing hardware and software infrastructure to develop the optimal solution for a given company.In this paper, we present a feature-based approach that uses a feature model to specify industrial LBS for different application categories like asset management, information provision, wayfinding, security and process analytics. For each application category, we have identified the possible LBS features that can be combined to create fitting LBS for the scenario at hand. The feature model facilitates the configuration of individual LBS, taking into account various prerequisites of a company. Furthermore, the feature model is linked to a technology morphology, which enables an accessible containment of the available technological solutions. We use the example use case “automatic tool configuration” to validate the specification approach using the feature model and the technology morphology.
机译:信息技术的迅速发展是正在进行的数字化转型的推动力。无处不在的通信设备和数字服务已成为我们生活中必不可少的一部分。上下文感知使给定情况下便利的新型交互形式和相关信息的即时传递成为可能。基于用户的当前位置或另一个实体的位置为用户提供利益的IT服务称为基于位置的服务(LBS)。在制造业持续数字化的背景下,LBS有潜力改善车间和办公室环境中的流程。然而,与B2C部门不同,由于存在许多阻碍实施的障碍,LBS尚未在工业环境中找到坚实的立足点。主要障碍是缺乏标准的室内定位解决方案,而这是室内定位所必需的。结果,室内LBS的实施需要量身定制的系统,该系统包括适当的室内定位技术,计算基础设施以及兼容的软件解决方案。在规范制定阶段,有必要评估初始情况以及现有的硬件和软件基础结构,以为给定的公司开发最佳解决方案。在本文中,我们提出了一种基于特征的方法,该方法使用特征模型来指定工业LBS。不同的应用类别,例如资产管理,信息提供,寻路,安全性和流程分析。对于每种应用类别,我们已经确定了可能的LBS功能,可以将这些功能组合起来以创建适合当前场景的LBS。考虑到公司的各种先决条件,该功能模型有助于单个LBS的配置。此外,特征模型与技术形态相关联,从而可以对可用技术解决方案进行可访问的控制。我们使用示例用例“自动工具配置”来使用特征模型和技术形态来验证规范方法。

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