Multi-Faceted Evaluation of Modeling Languages for Augmented Reality Applications -- The Case of ARWFML

Fuente: arXiv
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Main Authors: Muff, Fabian, Fill, Hans-Georg
Format: Preprint
Published: 2024
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author Muff, Fabian
Fill, Hans-Georg
author_facet Muff, Fabian
Fill, Hans-Georg
contents The evaluation of modeling languages for augmented reality applications poses particular challenges due to the three-dimensional environment they target. The previously introduced Augmented Reality Workflow Modeling Language (ARWFML) enables the model-based creation of augmented reality scenarios without programming knowledge. Building upon the first design cycle of the language's specification, this paper presents two further design iterations for refining the language based on multi-faceted evaluations. These include a comparative evaluation of implementation options and workflow capabilities, the introduction of a 3D notation, and the development of a new 3D modeling environment. On this basis, a comprehensibility study of the language was conducted. Thereby, we show how modeling languages for augmented reality can be evolved towards a maturity level suitable for empirical evaluations.
format Preprint
id arxiv_https___arxiv_org_abs_2408_14137
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Multi-Faceted Evaluation of Modeling Languages for Augmented Reality Applications -- The Case of ARWFML
Muff, Fabian
Fill, Hans-Georg
Computation and Language
Emerging Technologies
The evaluation of modeling languages for augmented reality applications poses particular challenges due to the three-dimensional environment they target. The previously introduced Augmented Reality Workflow Modeling Language (ARWFML) enables the model-based creation of augmented reality scenarios without programming knowledge. Building upon the first design cycle of the language's specification, this paper presents two further design iterations for refining the language based on multi-faceted evaluations. These include a comparative evaluation of implementation options and workflow capabilities, the introduction of a 3D notation, and the development of a new 3D modeling environment. On this basis, a comprehensibility study of the language was conducted. Thereby, we show how modeling languages for augmented reality can be evolved towards a maturity level suitable for empirical evaluations.
title Multi-Faceted Evaluation of Modeling Languages for Augmented Reality Applications -- The Case of ARWFML
topic Computation and Language
Emerging Technologies
url https://arxiv.org/abs/2408.14137