TY - CHAP A1 - Michaelis, Maja A1 - Herder, Jens ED - Cohen, Michael T1 - Augmented Reality for Lighting Adjustment in a Virtual Studio T2 - Augmented Reality - Situated Spatial Synergy [Working Title] N2 - An interactive virtual studio is used for live broadcasts with live interaction in front of the recording system. Advances in Augmented Reality (AR) using video see-through Head-Mounted Displays (HMDs) also make it possible to improve the production process itself. Lighting can be improved and adjusted using AR while seeing live effects. An Augmented Reality Lighting Adjustment System (ARLAS) for a virtual studio has been developed and evaluated. The traditional process for controlling lighting in a virtual studio is complicated and time-consuming. It often requires several people to control many different components at different locations. Using AR, this process is simplified by integrating relevant programs and video streams into a single application on an HMD, allowing direct control at lighting locations. Changes to settings are immediately visible on the real fixtures. Real lights can be replicated virtually to maintain consistent lighting conditions in virtual scenes, ensuring that virtual objects are lit as they would be in a real studio. The prototype demonstrated the benefits of AR for complex virtual studio setups and was evaluated by 18 participants. KW - Erweiterte Realität (Informatik) KW - Head-mounted Display KW - Studiotechnik KW - Beleuchtung KW - HSD Publikationsfonds Y1 - 2025 U6 - https://doi.org/10.5772/intechopen.1012424 PB - IntechOpen CY - London ER - TY - CHAP A1 - Honsbrok, Jan A1 - Mostafawy, Sina A1 - Herder, Jens A1 - Huldtgren, Alina T1 - Ray-LUT: A Lookup-Based Method for Camera Lens Simulation in Real-Time Using Ray Tracing T2 - Proceedings of the 20th International Joint Conference on Computer Vision, Imaging and Computer Graphics Theory and Applications N2 - Lens systems have a major influence on the image due to effects such as depth of field or optical aberrations. The only method to simulate these effects precisely is to trace rays through an actual lens system. This provides accurate results, but only with high computational effort. To speed up the ray tracing through the lens system, various acceleration methods have been developed, requiring considerable precomputations. We present a new method based on the Realistic Camera by Kolb et. al.. Instead of tracing each ray through the lens system, the rays are precomputed once and stored in a lookup table. In contrast to other methods, our method is simple, and does not require substantial preprocessing upfront. We can simulate complex effects such as chromatic aberrations accurately in real-time, regardless the number of lens surfaces in the system. Our method achieves the same performance as state-of-the-art methods like Polynomial Optics, while maintaining the same number of samples per pixel. Y1 - 2025 U6 - https://doi.org/10.5220/0013105900003912 SP - 177 EP - 184 PB - SciTePress ER - TY - CHAP A1 - Davin, Till A1 - Herder, Jens ED - Weier, Martin ED - Bues, Matthias ED - Wechner, Reto T1 - Real-Time Relighting of Video Streams for Augmented Virtuality Scenes T2 - GI VR / AR Workshop. Gesellschaft für Informatik e.V. KW - Virtual (TV) Studio Y1 - 2021 U6 - https://doi.org/10.18420/vrar2021_6 PB - Gesellschaft für Informatik e.V. (GI) CY - Bonn ER - TY - GEN A1 - Jarosch, Monika A1 - Herder, Jens A1 - Langmann, Mathias T1 - Entwicklung einer AR-Applikation zur kosteneffektiven volumetrischen Erfassung von Baugruben T2 - gis.Science N2 - Die volumetrische Erfassung von Aushüben auf Baustellen ist ein kostenrelevanter Faktor und wird auch heute im täglichen Baustellenbetrieb oft noch in manueller Detailarbeit durchgeführt. Kostengünstige Sensoren zur Tiefenerfassung ermöglichen die halbautomatische Erfassung von Baugruben. Augmented Reality (AR) kann für diesen Prozess das nötige Feedback liefern. Vorgestellt wird ein Prototyp, bestehend aus einem Tablet mit integrierter Kamera und einem Lidar-Scanner. Es wird die Erfassung des Volumens bezüglich Nutzbarkeit und Genauigkeit mit Einsatz von AR getestet und evaluiert. Zur Bestimmung des Volumens wird unter Verwendung von Strahlen mit Unterstützung einer Grafik-Engine ein Algorithmus entwickelt. Der Algorithmus ist robust gegen nicht vollständig geschlossene Volumen. Die Bedienung, Überprüfung und Visualisierung findet durch praktischen Einsatz von AR statt. KW - Volumenbestimmung KW - Augmented Reality KW - Baustelle KW - LIDAR KW - VSVR Y1 - 2022 UR - https://gispoint.de/artikelarchiv/gis/2022/gisscience-ausgabe-22022/7427-entwicklung-einer-ar-applikation-zur-kosteneffektiven-volumetrischen-erfassung-von-baugruben.html SN - 2698-4571 N1 - Der Artikel ist als PDF beim Verlag herunterladbar. Dieses wurde nach 3 Monaten freigeschaltet. Vorher war ein Abonnement notwendig. VL - 2022 IS - 2 SP - 75 EP - 83 PB - Wichmann ER - TY - JOUR A1 - Ryskeldiev, Bektur A1 - Cohen, Michael A1 - Herder, Jens T1 - StreamSpace: Pervasive Mixed Reality Telepresence for Remote Collaboration on Mobile Devices JF - Journal of Information Processing N2 - We present a system that exploits mobile rotational tracking and photospherical imagery to allow users to share their environment with remotely connected peers “on the go.” We surveyed related interfaces and developed a unique groupware application that shares a mixed reality space with spatially-oriented live video feeds. Users can collaborate through realtime audio, video, and drawings in a virtual space. The developed system was tested in a preliminary user study, which confirmed an increase in spatial and situational awareness among viewers as well as reduction in cognitive workload. Believing that our system provides a novel style of collaboration in mixed reality environments, we discuss future applications and extensions of our prototype. KW - Ubiquitous Computing KW - Telepresence KW - Remote Collaboration KW - Mixed Reality KW - Live Video Streaming Y1 - 2018 U6 - https://doi.org/10.2197/ipsjjip.26.177 VL - 26 SP - 177 EP - 185 PB - J-STAGE ER - TY - CHAP A1 - Brettschneider, Nico A1 - Herder, Jens A1 - de Mooij, Jeroen A1 - Ryskeldiev, Bektur ED - Herder, Jens T1 - Audio vs. Visual Avatars as Guides in Virtual Environments T2 - 21th International Conference on Human and Computer, HC-2018, March 27–28, 2019, Shizuoka University, Hamamatsu, Japan. N2 - Through constant technical progress, multi-user virtual reality is transforming towards a social activity that is no longer only used by remote users, but also in large-scale location-based experiences. We evaluate the usage of realtime-tracked avatars in co-located business-oriented applications in a "guide-user-scenario" in comparison to audio only instructions. The present study examined the effect of an avatar-guide on the user-related factors of Spatial Presence, Social Presence, User Experience and Task Load in order to propose design guidelines for co-located collaborative immersive virtual environments. Therefore, an application was developed and a user study with 40 participants was conducted in order to compare both guiding techniques of a realtime-tracked avatar guide and a non-visualised guide with otherwise constant conditions. Results reveal that the avatar-guide enhanced and stimulated communicative processes while facilitating interaction possibilities and creating a higher sense of mental immersion for users. Furthermore, the avatar-guide appeared to make the storyline more engaging and exciting while helping users adapt to the medium of virtual reality. Even though no assertion could be made concerning the Task Load factor, the avatar-guide achieved a higher subjective value on User Experience. Due to the results, avatars can be considered valuable social elements in the design of future co-located collaborative virtual environments. KW - Virtual Reality KW - Co-located Collaborations KW - Networked Immersive Virtual Environments KW - Head-mounted Display KW - Avatars KW - Lehre Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:hbz:due62-opus-23859 UR - https://vsvr.medien.hs-duesseldorf.de/publications/hc2018-avatar/ PB - Hochschule Düsseldorf CY - Düsseldorf ER - TY - CHAP A1 - Herder, Jens A1 - Brettschneider, Nico A1 - de Mooij, Jeroen A1 - Ryskeldiev, Bektur T1 - Avatars for Co-located Collaborations in HMD-based Virtual Environments T2 - IEEE VR 2019, 26th IEEE Conference on Virtual Reality and 3D User Interfaces, Osaka, March, 2019 N2 - Multi-user virtual reality is transforming towards a social activity that is no longer only used by remote users, but also in large-scale location-based experiences. Usage of realtime-tracked avatars in co-located business-oriented applications with a ”guide-user-scenario” is examined for user-related factors of Spatial Presence, Social Presence, User Experience and Task Load. A user study was conducted in order to compare both techniques of a realtime-tracked avatar and a non-visualised guide. Results reveal that the avatar-guide enhanced and stimulated communicative processes while facilitating interaction possibilities and creating a higher sense of mental immersion for users and engagement. KW - Virtual Reality KW - Co-located Collaborations KW - Head-mounted Display KW - Avatars KW - Social Presence KW - Lehre Y1 - 2019 UR - https://vsvr.medien.hs-duesseldorf.de/publications/ieeevr2019/ U6 - https://doi.org/10.1109/VR.2019.8798132 SP - 968 EP - 969 PB - IEEE CY - Osaka ER - TY - CHAP A1 - Herder, Jens A1 - Takeda, Shinpei A1 - Vermeegen, Kai A1 - Davin, Till A1 - Berners, Dominique A1 - Ryskeldiev, Bektur A1 - Zimmer, Christian A1 - Druzetic, Ivana A1 - Geiger, Christian T1 - Mixed Reality Art Experiments - Immersive Access to Collective Memories T2 - ISEA2019, Proceedings, 25th International Symposium on Electronic Art, Gwangju, South Korea, June 22-28, 2019 N2 - We report about several experiments on applying mixed reality technology in the context of accessing collective memories from atomic bombs, Holocaust and Second World War. We discuss the impact of Virtual Reality, Augmented Virtuality and Augmented Reality for specific memorial locations. We show how to use a virtual studio for demonstrating an augmented reality application for a specific location in a remote session within a video conference. Augmented Virtuality is used to recreate the local environment, thus providing a context and helping the participants recollect emotions related to a certain place. This technique demonstrates the advantages of using virtual (VR) and augmented (AR) reality environments for rapid prototyping and pitching project ideas in a live remote setting. KW - Mixed Reality KW - Augmented Reality KW - Augmented Virtuality KW - Rapid Prototyping KW - Video Conferencing Y1 - 2019 UR - http://www.isea-archives.org/docs/2019/ISEA2019_Proceedings.pdf SP - 334 EP - 341 PB - IESA CY - Gwangju ER - TY - CHAP A1 - Herder, Jens A1 - Cohen, Michael T1 - Design of a Helical Keyboard T2 - icad'96 - International Conference on Auditory Display, Palo Alto N2 - Inspired by the cyclical nature of octaves and helical structure of a scale (Shepard, '82 and '83), we prepared a model of a piano-style keyboard (prototyped in Mathematica), which was then geometrically warped into a left-handed helical configuration, one octave/revolution, pitch mapped to height. The natural orientation of upper frequency keys higher on the helix suggests a parsimonious left-handed chirality, so that ascending notes cross in front of a typical listener left to right. Our model is being imported (via the dxf file format) into (Open Inventor/)VRML, where it can be driven by MIDI events, realtime or sequenced, which stream is both synthesized (by a Roland Sound Module), and spatialized by a heterogeneous spatial sound backend (including the Crystal River Engineering Acoustetron II and the Pioneer Sound Field Control speaker-array System), so that the sound of the respective notes is directionalized with respect to sinks, avatars of the human user, by default in the tube of the helix. This is a work-in-progress which we hope to be fully functional within the next few months. Y1 - 1996 CY - Palo Alto ER - TY - JOUR A1 - Martens, William L. A1 - Herder, Jens T1 - Perceptual criteria for eliminating reflectors and occluders for efficient rendering of environmental sound JF - The Journal of the Acoustical Society of America Y1 - 1999 U6 - https://doi.org/10.1121/1.425349 VL - 105 IS - 2 SP - 979 ER -