Augmented reality mobile information system for the obtaining detailed and non-intrusive information in large environments

IF 0.4 Q4 ENGINEERING, MULTIDISCIPLINARY
Katerine Marceles Villlalba, Elkin Faber Ortiz Martinez, David Armando Benavides Zuñiga, Siler Amador Donado
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Abstract

Introduction: This article is the result of the augmented reality project "AR position U" for the effective visualization of information of interest dynamically through augmented reality, carried out in the year 2022 in the city of  Popayan, capital of the department of Cauca. Problem: Problems have been identified regarding the location of spaces in very large places by people who have no knowledge of the site you need to locate causing loss of time, frustration to the point of being late to the desired location. This leads to the following problem question: What would be the impact of the implementation of an augmented reality application, whose purpose is to provide detailed information to people in a non-intrusive way in large environments? Objective: To propose a mobile information system that allows users to orient themselves and obtain detailed information in a dynamic and non-intrusive way in large environments through augmented reality. Methodology: The experimental methodology is used, since a series of tests were determined to reach the validation of the information system in order to have a product that was articulated with the guide of good practices of project management and meet the needs of the population to which it could be directed. Results: As a result, the information system based on augmented reality was obtained, allowing the easy location of spaces due to the usability of the product. Conclusion: Based on the experimental methodology it is determined that, although augmented reality improves the detailed descriptions of large environments, it is very limited to the external conditions, however, the tool meets the proposed objectives. Originality: Augmented reality information system for orientation in large places and obtaining information in a non-intrusive way, under the PMBOK and XP methodology. Limitations: Due to complexity and time constraints, it is not possible to cover all faculties. On the other hand, 3D interface is only generated by QR tags. On the other hand, the correct functioning of the system can be affected by lighting factors, the distance of the user from the tag, the hardware and software capacity of the smartphone and the internet connection.
用于在大型环境中获取详细和非侵入性信息的增强现实移动信息系统
简介:本文是增强现实项目“AR position U”的成果,该项目旨在通过增强现实有效地动态可视化感兴趣的信息,该项目于2022年在考卡省首府波帕扬市开展。问题:在非常大的地方,人们发现了一些关于空间位置的问题,他们不知道你需要定位的地点,导致时间的损失,沮丧到迟到的程度。这导致了以下问题:增强现实应用程序的实现会产生什么影响?增强现实应用程序的目的是在大型环境中以非侵入性的方式向人们提供详细信息。目的:提出一种移动信息系统,通过增强现实技术,使用户能够在大环境中以动态、非侵入的方式进行自我定位和获取详细信息。方法:采用了实验方法,因为确定了一系列测试以达到信息系统的验证,以便生产出符合项目管理良好做法指南的产品,并满足其可能针对的人群的需求。结果:获得了基于增强现实的信息系统,由于产品的可用性,可以方便地定位空间。结论:基于实验方法可以确定,虽然增强现实改善了对大环境的详细描述,但它非常受外部条件的限制,但是该工具满足了提出的目标。原创性:在PMBOK和XP方法论下,用于在大型场所定位和以非侵入方式获取信息的增强现实信息系统。限制:由于复杂性和时间限制,不可能涵盖所有院系。另一方面,3D界面仅由QR标签生成。另一方面,系统的正确功能可能受到照明因素、用户与标签的距离、智能手机的硬件和软件容量以及互联网连接的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Ingenieria Solidaria
Ingenieria Solidaria ENGINEERING, MULTIDISCIPLINARY-
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