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OpenSimulator Virtual World Server Case Study (part 1)

Use of virtual worlds for training, entertainment, and collaboration is growing. Intel Labs has been researching the scalability of virtual worlds. This series explores some of the design, performance, and execution features of virtual world servers.
Authored by Last updated on 03/05/2019 - 23:40
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OpenSimulator Virtual World Server Case Study (part 2)

Use of virtual worlds for training, entertainment, and collaboration is growing. Intel Labs has been researching the scalability of virtual worlds. This series explores some of the design, performance, and execution features of virtual world servers.
Authored by Last updated on 03/05/2019 - 23:40
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OpenSimulator Virtual World Server Case Study (Part 3): Virtual World Server Power Savings by Dynamic Physics Tuning

Use of virtual worlds for training, entertainment, and collaboration is growing. Intel Labs has been researching the scalability of virtual worlds. This series explores some of the design, performance, and execution features of virtual world servers.
Authored by Last updated on 07/11/2019 - 13:18
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Comparison of Projection Methods for Rendering Virtual Reality

Virtual reality is rapidly gaining popularity, and may soon become a common way of viewing 3D environments. While stereo rendering has been performed on consumer grade graphics processors for a while now, the new wave of virtual reality display devices have two properties that typical applications have not needed to consider before. Pixels no longer appear on regular grids and the displays...
Authored by admin Last updated on 05/03/2019 - 15:34
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Making your VR application more realistic – adding complex physics to games

Nowadays, VR is welcomed by lots of developers, OEMs, and end users. People enjoy VR experience as they can be immersive in a virtual world.

Authored by Huang, Chao (Intel) Last updated on 05/09/2019 - 13:08
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API without Secrets: Introduction to Vulkan* Part 6

This part of the tutorial presented a way to use textures (combined image samplers, in fact) inside shaders. To do this we created an image and allocated and bound a memory to it. We also created an image view. Next, we copied data from a staging buffer to the image to initialize its contents. We also created a sampler object that defined a way in which image data was read inside shaders.
Authored by Pawel L. (Intel) Last updated on 12/06/2018 - 16:27
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Enhancing VR Immersion with the CPU in Star Trek™: Bridge Crew

Virtual Reality (VR) is a segment where the combination of environmental interaction, enhanced physics simulation, and destruction can become the frosting on the cake that keeps a player in your game and wanting more. This article will take you through each of the CPU-intensive features implemented in Star Trek™: Bridge Crew* with instructions on utilizing the systems they’ve been built upon.
Authored by Last updated on 05/02/2019 - 16:12
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From UAV to VR in No Time: Autodesk® ReCap™ Photo Quickly Renders 3D Structures Thanks to Multicore Scalability

Creating 3D models of an outdoor scene for use in architecture, engineering, and construction is now easier and faster than ever with the help of UAVs, Autodesk ReCap Photo, and high-core-count Intel Xeon processors. Businesses in these sectors can take advantage of the new speed, ease, and availability of 3D modeling based on photogrammetry to meet more deadlines, speed construction time,...
Authored by admin Last updated on 12/11/2017 - 16:43
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