Spatial User Interfaces for Large-Scale Projector-Based Augmented Reality

2014 ◽  
Vol 34 (6) ◽  
pp. 74-82 ◽  
Author(s):  
Michael R. Marner ◽  
Ross T. Smith ◽  
James A. Walsh ◽  
Bruce H. Thomas
Author(s):  
Michael Wessely ◽  
Ticha Sethapakdi ◽  
Carlos Castillo ◽  
Jackson C. Snowden ◽  
Ollie Hanton ◽  
...  

Nanophotonics ◽  
2020 ◽  
Vol 9 (9) ◽  
pp. 3003-3010
Author(s):  
Jiacheng Shi ◽  
Wen Qiao ◽  
Jianyu Hua ◽  
Ruibin Li ◽  
Linsen Chen

AbstractGlasses-free augmented reality is of great interest by fusing virtual 3D images naturally with physical world without the aid of any wearable equipment. Here we propose a large-scale spatial multiplexing holographic see-through combiner for full-color 3D display. The pixelated metagratings with varied orientation and spatial frequency discretely reconstruct the propagating lightfield. The irradiance pattern of each view is tailored to form super Gaussian distribution with minimized crosstalk. What’s more, spatial multiplexing holographic combiner with customized aperture size is adopted for the white balance of virtually displayed full-color 3D scene. In a 32-inch prototype, 16 views form a smooth parallax with a viewing angle of 47°. A high transmission (>75%) over the entire visible spectrum range is achieved. We demonstrated that the displayed virtual 3D scene not only preserved natural motion parallax, but also mixed well with the natural objects. The potential applications of this study include education, communication, product design, advertisement, and head-up display.


Author(s):  
Pierdicca Roberto ◽  
Frontoni Emanuele ◽  
Zingaretti Primo ◽  
Mancini Adriano ◽  
Loncarski Jelena ◽  
...  

2021 ◽  
Author(s):  
Connor Daniel Flick ◽  
Courtney J Harris ◽  
Nikolas T Yonkers ◽  
Nahal Norouzi ◽  
Austin Erickson ◽  
...  

2021 ◽  
Vol 17 (1) ◽  
pp. 247-255
Author(s):  
Konstantinos CHARISI ◽  
Andreas TSIGOPOULOS ◽  
Spyridon KINTZIOS ◽  
Vassilis PAPATAXIARHIS

Abstract. The paper aims to introduce the ARESIBO project to a greater but targeted audience and outline its main scope and achievements. ARESIBO stands for “Augmented Reality Enriched Situation awareness for Border security”. In the recent years, border security has become one of the highest political priorities in EU and needs the support of every Member State. ARESIBO project is developed under HORIZON 2020 EC Research and Innovation program and it is the joint effort of 20 participant entities from 11 countries. Scientific excellence and technological innovation are top priorities as ARESIBO enhances the current state-of-the-art through technological breakthroughs in Mobile Augmented Reality and Wearables, Robust and Secure Telecommunications, Robots swarming technique and Planning of Context-Aware Autonomous Missions, and Artificial Intelligence (AI), in order to implement user-friendly tools for border and coast guards. The system aims to improve the cognitive capabilities and the perception of border guards through intuitive user interfaces that will help them acquire an improved situation awareness by filtering the huge amount of available information from multiple sources. Ultimately, it will help them respond faster and more effectively when a critical situation occurs.


Author(s):  
Damien Hompapas ◽  
Christian Sandor ◽  
Alexander Plopski ◽  
Daniel Saakes ◽  
Dong Hyeok Yun ◽  
...  

2021 ◽  
Vol 58 (3) ◽  
pp. 137-142
Author(s):  
A.O. Dauitbayeva ◽  
◽  
A.A. Myrzamuratova ◽  
A.B. Bexeitova ◽  
◽  
...  

This article is devoted to the issues of visualization and information processing, in particular, improving the visualization of three-dimensional objects using augmented reality and virtual reality technologies. The globalization of virtual reality has led to the introduction of a new term "augmented reality"into scientific circulation. If the current technologies of user interfaces are focused mainly on the interaction of a person and a computer, then augmented reality with the help of computer technologies offers improving the interface of a person and the real world around them. Computer graphics are perceived by the system in the synthesized image in connection with the reproduction of monocular observation conditions, increasing the image volume, spatial arrangement of objects in a linear perspective, obstructing one object to another, changing the nature of shadows and tones in the image field. The experience of observation is of great importance for the perception of volume and space, so that the user "completes" the volume structure of the observed representation. Thus, the visualization offered by augmented reality in a real environment familiar to the user contributes to a better perception of three-dimensional object.


2020 ◽  
Vol 7 (2) ◽  
Author(s):  
Ellyta Tambunan ◽  
Anwari Masatip

The use of technology today in various sectors of life is very high, this can also seen from the needs and improvements provided by this digital service. Augmented Reality (AR) is one of the organizations that builds and improves online information today. The Covid-19 pandemic had a considerable effect on the use of this technology with the imposition of large-scale physical distancing, this depends on various sectors that exist today, especially the tourism sector. Therefore, it has a big impact on tourism activities / activities, both on a national and international scale (foreign) who will visit tourist spots / destinations. Augmented Reality has various features that support in various fields, one of which is traveling. The scientific and theoretical studies in this study provide a useful reference source for developers of mobile AR applications, tourism managers, and effective marketing strategies in facing the new normal era today. So that tourism businesses or tourist destinations better understand user preferences for mobile AR applications and others that are able to maintain behavior can still enjoy travel with their impulsivity in the context of tourism as a result.  


Author(s):  
Michał Bednarczyk

User interfaces are in continuous progress. As the computing power of modern machines grows, they become more user-friendly and intuitive. Not all solutions are widely accepted, sometimes they become only a “curiosity”, while another ones achieve success. Lately, some user interface designers strive for such solutions, in which the user will have the impression of “staying” or “permeation” of the system with reality and therefore some kind of software integration with the environment. This is achieved by various methods utilizing interfaces controlled by voice or touch. Quite spectacular and very interesting are solutions that integrate image generated by a computer with a real view. This technology is called AR – Augmented Reality, and is the core of the author’s considerations about its application in contemporary surveying and GIS practice. In this article, are presented issues related to the possibilities that lie in the use of this technology in the daily work of geo-engineer.


Sign in / Sign up

Export Citation Format

Share Document