Open Source Virtual Reality Software - Page 4

Virtual Reality Software

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  • 1
    OpenReality will be a 3D Engine Library for development of Games, Virtual Reality and 3D Visualization applications. It will be very intuitive, and strongly object oriented. Of course, performance will have a great weight on the project´s decisions.
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  • 2

    OpenSourceMetaverse Editor

    a simple virtual world editor

    OSME allows building virtual worlds in a single web app page form. Try selecting a built-in template to demonstrate sample virtual worlds. (e.g. Form: "Trip Visit Plan - May 2022".) Project the virtual world onto the map. (e.g. Form: Click the button for the instruction to take effect) Test one of the virtual objects marked on the map. (e.g. Map: Select a marked location like "Statue of Liberty") Explore the virtual surrounding in the 360 degrees panorama. (e.g. 3D: Navigate scene in virtual environment) Access the selected item to expand (e.g. Map/3D: Click on the "Statue of Liberty" reference) Build own virtual world by personalised customisation to the settings in the text box. Share it with others. Ideal for: running virtual exhibition event; showcasing items on display like in a museum of collectible art for curation; list favourite places to visit, shop and dine; constructing, playing, sharing virtual worlds one can imagine.
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  • 3
    OpenXR-Hpp project

    OpenXR-Hpp project

    Open-Source OpenXR C++ language projection

    This repository contains build scripts and test files for the openxr.hpp headers, providing a C++-friendly projection of the OpenXR API. To improve/maintain consistent code style and code quality, we strongly recommend setting up the pre-commit hooks. If you just want to generate the headers, run ./generate-openxr-hpp.sh or ./generate-openxr-hpp.ps1. If your OpenXR-SDK-Source (or internal gitlab) repo isn't in a directory named that parallel to this one, you can set OPENXR_REPO environment variable before running. Requires clang-format, preferably 6.0. To build this project, you must have OpenXR-SDK-Source cloned in a peer directory of this one.
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  • 4
    OutcropVR

    OutcropVR

    See geologic outcrops in virtual reality

    OutcropVR is a toolkit for geologists. One aspect of OutcropVR is of building a scene to view in VR. OutcropVR supports creation of real-world landscape data from coordinates or georeferenced models, as well as localization from UTM values. The other aspect is the "game" mode tools. You can fly around your favorite outcrops and see unique angles that are impossible or difficult to get in real life. With the laser pointer tool, you can create lines and planes that then display the trend/plunge or strike/dip. Use the Unity menu to select Tools/Localize Photogrammetry Model from UTM. This function takes in a photogrammetry .obj file that is in UTM coordinates and converts it into smaller numbers so that Unity can work with it. If a texture file is supplied as well, it will be mapped onto the object.
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  • 5
    Pansophica is an intelligent web search agent that presents results in a dynamic and interactive virtual reality. Twist, fly and play the net.
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  • 6
    Puzzler-VR

    Puzzler-VR

    A VR puzzle game for Cardboard using Unity

    Puzzler is a mobile VR application for new VR users which challenges them to solve a familiar type of puzzle in a new way. You just need your mobile and VR cardboard and you can enjoy playing puzzles in a virtual world without being distracted by anything from the real world you live in. Most of the scripts were provided by Udacity. I have edited them to match my needs. Most of the models and textures are provided by Udacity starter files. I used some images for texturing the particles. The main target platform is android mobiles to use it with cardboard viewer. The main focus in this project is the design issues of the VR experience. So you might find a lot of stuff about testing and designing. But trust me it’s all about making the user have a great VR experience. Puzzler is a mobile VR application for new VR users which challenges them to solve a familiar type of puzzle in a new way.
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  • 7
    Qualisys Unity SDK

    Qualisys Unity SDK

    Unity package for the C# (.NET) implementation for Qualisys Track

    Animating characters is straightforward with automatic mapping between Unity’s Mecanim human bones and QTM segments. Just add the skeleton script, set the actor name of the QTM skeleton and press play. Using a QTM rigid body to set the position and orientation of a GameObject is equally easy. Just add a script to the GameObject and set the name of the QTM rigid body. Get a real-time stream of motion capture data in Unity with minimal latency. This makes it possible to drive characters, rigid bodies or any other Unity object. Qualisys provides a robust skeleton solver that lets you solve one or more actors in real-time. Capturing crouching, wrestling and lying on the floor has never been this straightforward. By combining skeleton solving with AIM, you can capture advanced setups in a simplified workflow. An FBX is the easiest way to read mocap data in external gaming or animation software. Our FBX files contain characters, skeletons, optical markers and actors.
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  • 8
    RESTbot

    RESTbot

    RESTful transactions to interact with a bot in Second Life or OpenSim

    RESTBot is a C# webserver that uses RESTful transactions to interact with a bot in Second Life or OpenSimulator. This bot (or a collection of bots) is started through a REST command and can be stopped the same way. The software is extremely modular, and is designed to easily accept plugins that developers can write (in C#) to add more complex interaction between a web application and a Second Life® bot (a non-human-controlled avatar). *Note:* No Files for release; source code only (on the Code tab) The Wiki might be a bit weird to navigate, since it was imported from GitHub...
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  • 9
    SaccadeVR-mobile

    SaccadeVR-mobile

    A software package of Unity to use HTC VIVE Pro Eye

    A software package of Unity to use HTC VIVE Pro Eye, a head-mounted display with virtual reality technology, for assessment of saccadic eye movement. C# programming file to configure the measurement system. C# programming file to disable the tracking of head movement of the VR headset. If the tracking is active, the position of the stimuli targets for saccade measurement changes when the user moves the head. Data of eye movement are recorded in a text file. The text file is created under the folder of SaccadeVR_ViveProEye. Unixtime of the computer is recorded in a specific text file when the saccade task starts in each saccade trial. With the recorded time, the latency (response time) of saccadic eye movement is calculated. We use version 2 in SRanipal SDK to measure the eye movement and to enable eye data callback function to continue to record the data of ocular movement independently of the main thread of the program.
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  • 10
    Simple Note VR

    Simple Note VR

    Notification system to display plain text in VR for Unity engine

    A simple notification system to display plain text in VR for Unity engine. Please go to the release page to download the package. Import the package into your own project, simply drag the "NotificationVR" prefab to the scene. Then, in your own script, call "SimpleNoteVR.Instance. Notify(string words, float lingertime)" to trigger plain text notifications.([lingertime is the duration that your notification will last for]). You can also choose to call "SimpleNoteVR.Instance.Notfiy_Hold(string words)". This function will instead keep the notification in place until you call "SimpleNoteVR.Instance.Notfiy_Release" to release it. Notify_Hold/Notify_Release functions might be useful in cases like notifying players a loading process is ongoing/finished.
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  • 11
    the simple universe library aims to provide a simple (possibly game-oriented) virtual reality where real-world objects and surfaces (like terrain) can be defined and simulated. Uses OpenGL and ODE.
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  • 12
    Simula

    Simula

    Linux VR Desktop

    Simula is a virtual reality (VR) window manager and desktop environment for Linux, built atop the Godot engine. It provides a VR-based Linux desktop experience, enabling productive workflows in AR/VR with immersive window management. A common objection to the viability of VR Desktop is that it exhibits poor text quality; however, with our low pass filter, Simula has taken special care to make text quality as clear as possible. The left image is a VR terminal without our filter applied; the right is the same image with our filter applied. Compared to other VR Desktops, Simula allows for longer sessions without uncomfortable eye strain. In Simula, VR Windows become “active” once you look at them. Active windows receive (i) typing events from the keyboard and (ii) cursor events from any mouse movement.
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  • 13
    This project aims to develop an interaction framework based on body detection by webcams, identifying the skeleton shape (hands, arms, head, legs etc), for games, virtual reality, augmented reality and other applications.
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  • 14
    Sol-R

    Sol-R

    Open-source CUDA/OpenCL speed of light ray-tracer

    Sol-R is a CUDA/OpenCL-based real-time ray-tracer compatible with Oculus Rift DK1, Kinect, Razor Hydra and Leap Motion devices. Sol-R was written as a hobby project in order to understand and learn more about CUDA and OpenCL. Most of the code was written at night and during weekends, meaning that it's probably not the best quality ever. The idea was to produce a Ray-Tracer that has its own "personality". Most of the code does not rely on any literature about ray-tracing, but more on a naive approach of what rays could be used for. The idea was not to produce a physically based ray-tracer, but a simple engine that could produce cool images interactively. Take it for what it is! Sol-R is a lot of fun to play with if you like coding computer-generated images.
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  • 15
    3D Game look like a ice-hockey or football in the space. stereo sound and virtual reality helmet support.
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  • 16
    The TP5DataGlove enables you to use the P5 Glove by Essential Reality in your Delphi Applications. Now you can easily create Virtual Reality Software with Dataglove support. It utilizes a C++ Wrapper DLL which provides functions to access the Glove. It is
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  • 17
    The Cognitive3D SDK for Unity

    The Cognitive3D SDK for Unity

    Cognitive3D SDK for Unity, analytics for VR/AR/MR

    The most powerful spatial analytics platform to help you understand user behavior within immersive experiences. Identify exactly what users are paying attention to and in what order. Measure training performance and outcomes with employees. Evaluate compliance to improve safety, reduce injury and errors. Collect distributed insights for CPG, AEC and retail environments. Prove out your hypotheses by conducting experiments in VR. Receive scientific accuracy in captured eye-tracking, fixations and biometrics.. Improve product development workflows to enable rapid insights. This SDK allows you to integrate your Unity games with Cognitive3D, which provides analytics and insights about your Unity project. In addition, Cognitive3D empowers you to take actions that will improve users' engagement with your experience.
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  • 18
    UT VR-Lab Video Recorder/Reader

    UT VR-Lab Video Recorder/Reader

    Video Recorder/Reader for Virtual Reality Experiments

    The tools in this project are used by the Virtual Reality lab at University of Texas at Austin to record the stream of rendered images (OpenGL) and combine them with eye tracking data (if eyes are being tracked) and user defined metadata. The project is split into two parts. DVR is used to record the data stream as a QuickTime movie. The RVD is used to read the movie recorded by the DVR. Acknowledgements: John Stone - created most of the code base Gabriel Diaz and Joseph Cooper - QA Dmitry Kit - Maintainer/QA Dr. Mary Hayhoe and Dr. Dana Ballard Virtual Reality Laboratory at University of Texas in Austin
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  • 19
    An Experimantation Platform for User Interaction through a Multi-Touch Interface for Navigation in a Virtual Reality Environment.
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  • 20
    VR Neuroanatomy

    VR Neuroanatomy

    Explore and dissect a complete brain model in VR

    Understanding the anatomy of complex organs such as the human brain can be a challenge for students, so there is a definite advantage given to students who can experience the structures in a spatial way through real or virtual experiences. Since 2016, the Marquette Visualization Lab has been utilizing a dataset of 3 and 7 Tesla MRI scans from the Structural Informatics Group at University of Washington to visualize the structures of the brain in their Cave, utilizing the Unity game engine and 10 stereoscopic 3D projectors. Most MRI scans are presented as a volumetric rendering, but this dataset is unique because it was fully labelled and parcellated, allowing lab users to not only view the structures of the brain, but also virtually dissect it in a large scale, collaborative virtual reality environment. This year, in the interest of making the learning experience more mobile and accessible, the visualization was ported to the Oculus Quest.
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  • 21
    VR Radio Helper

    VR Radio Helper

    VR-Optimized ATC/Radio Plugin for X-Plane + FlyWithLua

    VR Radio Helper is a FlyWithLua plugin for X-Plane 11. It allows changing the two main COM frequencies of any X-Plane airplane in Virtual Reality via convenient touch pad number buttons in a multi-crew environment. For many default airplanes, NAV, Transponder and Barometer can be changed as well. Flying VR multi-crew in X-Plane with ATC is a blast! Yet, the default X-Plane 11 VR knobs are horrible when trying to monitor/fly and dial in a new ATC frequency at the same time (takes up to 2 minutes for a 2-hour flight, just turning the knob and making sure that no turn got lost when using SmartCopilot). It replaces most ATC/navigation-related knobs with a number panel, like COM, NAV, Transponder and Barometer settings. Works with SmartCopilot, synchronizing COM/NAV frequencies, transponder codes and barometer settings between two pilots.
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  • 22
    VRPN C# Client
    VRPN, Virtual Reality Peripheral Network, is a device-independent and network-transparent system for accessing virtual reality peripherals in VR applications. The project generates a dll to easily conect a C# aplication with the VRPN server.
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  • 23
    VRWorkout

    VRWorkout

    High-intensity virtual reality workout game

    The game tracks your running speed and awards more points the faster you go. Arm movements to the beat of the music and fast ducking to avoid bad targets. Shallow or deep squats depending on your comfort level. Engange your core muscles by reaching for higher targets. Pushups followed by jumps get your heart pumping. Classic pushup, one-armed planks and side planks. Fast and small jumps similar to skip rope jumping. A “workout first” VR music game with hand tracking based full-body exercises in boot camp style workouts, your fitness wins regardless of your score. Physically engaging experience with elements of calisthenics, high-intensity interval & circuit training. Activates your whole body compared to just certain areas with squatting, pushups, side planks, crunches, jumping, burpees and more.
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  • 24
    VRforCAD developed in Java and Java3D API, combines two systems: Computer-aided design (CAD) system and Virtual Reality system with its special equipments for visualization and manipulation. See more at: http://www.vrforcad.org
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  • 25
    VRmol

    VRmol

    Virtual reality system to explore macromolecular structure

    We leverage the most cutting-edge computational technologies to develop a virtual reality (VR) system - VRmol - that provides the visualization and analysis of macromolecule structures in an infinite virtual environment on the web. VRmol is natively built with WebVR technology, providing all structural analysis functions in a fully immersive, inspiring virtual environment. It is convenient to use, runs on the internet, and requires no software downloading and installation. And by connecting to a number of cloud-based genomic and drug databases, it provides an integrative platform to perform advanced structural and translational research. It can be freely accessed online by typing https://VRmol.net in VR-supported browser.
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