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Design knowledge on smart glasses-based systems is scarce. Utilizing literature analysis on software development publications, insights from the design and implementation of four smart glasses-based systems and expert interviews, we elicited 16 design principles to provide guidance in the development of future service support systems. Heuristic Theorizing is an abductive Design Science Research method, hitherto far too little known or little noticed, which was applied to conduct the research. We contribute to theory and practice with applicable design principles to support the development of smart glasses-based systems. Phenomena known to have an impact on the adoption of smart glasses are addressed by these design principles.
A structured hospital discharge management process can lead to a smoother transition to aftercare. In practice, providing continuity of nursing care after a stationary hospital stay is accompanied by numerous challenges. The presented study aims to point out the use cases and requirements for an IT system supporting the diverse tasks of the participating actors. Within the scope of a multi-method research design, the authors conducted and analysed stakeholder interviews, a shadowing, a systematic literature search and statutes in order to gain the presented results. This publication presents 37 requirements, grouped to 14 use cases. A process model in BPMN visualises the discharge management process. Further, the authors derived implications for practice and research. These can be used for the development, classification and assessment of IT systems. Therefore, this publication provides a significant contribution to the development of socio-technical systems within the health care domain.
In this paper, we introduce a framework to identify domain specific use cases for smart glasses in the domain of logistics services. We further present and evaluate our framework through its application in a single case study in a wholesale warehouse. We contribute to theory and practice by presenting an approach to identify, define and describe application scenarios for the adoption of smart glasses in the logistics domain, and by enriching the current body of knowledge on digitalization, service support systems and wearables. Therefore, our research falls into line with the second topic. We directly address current challenges in logistics, one of Germany’s major economic sectors, regarding the implementation of new or advanced services with smart glasses. The presented case study is embedded in the digitalization project Glasshouse. The processes of two logistics services providers are the main research subjects in this project. In contrast to this, we focus on a third logistic service provider in this paper, to evaluate the transferability of our findings.
The development of augmented reality glasses is still ongoing and faces barriers in diffusion and concerns about their impact on users, organizations and society. The study aims to find sufficient solutions for this struggling digital innovation and to provide guidance for the implementation of augmented reality glasses in design-oriented projects. During a 3-year consortium research, acceptance and privacy have been identified as major phenomena that influence the adoption of augmented reality glasses in the logistics domain. To forge ahead digital innovation research, the focus of the presented research lies on the diffusion of this technology with design knowledge for the development of augmented reality glasses-based systems. Evidence and artifacts contribute to the still limited knowledge of system design based on augmented reality glasses from a domain-specific instantiation and an implementation framework.
Smart Glasses haben das Potenzial, die Einarbeitungsphase von Mitarbeitern durch eine kontextsensitive Informationsversorgung und Kommunikation direkt im Blickfeld des Nutzers zu erweitern und zu verbessern. Im Rahmen eines gestaltungsorientierten Ansatzes wird das Einsatzszenario mit Hilfe von Experteninterviews analysiert und durch fachbezogene Literatur strukturiert. Als Resultat liefert dieser Beitrag spezifische Anforderungen an Smart-Glasses-basierte Assistenzsysteme in der Einarbeitungsphase von Mitarbeitern am Beispiel der Logistik-Branche aus Sicht der Praxis. Zusätzlich werden eine entsprechende Konzeption mit anschließender Evaluation eines korrespondierenden Systems sowie die dafür spezifizierten Kollaborationsfunktionen vorgestellt. Die Meta-Anforderungen, die Evaluation des vorgeschlagenen Konzeptes und die identifizierten Kollaborationsfunktionen erweitern die Wissensbasis der Wirtschaftsinformatik hinsichtlich des wenig erforschten Gestaltungswissens für Smart-Glasses-basierte Applikationen. Der Einsatz von Smart Glasses in der Einarbeitung stellt einen nutzenstiftenden Anwendungsfall für diese aktuell noch wenig verbreitete Technologie, sowie eine neue Interaktionsebene und zugehörige Kollaborationsfunktionen in der Einarbeitungsphase von Mitarbeitern dar und ist somit von hoher Relevanz sowohl für die Praxis als auch Wissenschaft.