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Multi-faceted upgrades to Intel's new Alloy Prototype improvements from Baidu VR

Last year, Intel announced its "Project Alloy" virtual reality machine and demonstrated its amazing virtual reality capabilities. They positioned the device as an open reference platform, and the device is still under development. The company hopes to build an advanced, integrated virtual reality headset. However, developers who work closely with Head Start have already shared new details about the next version.

Defining Project Alloy as just a VR header is inaccurate. It is not only a sensor device that understands the surrounding environment; it is actually a full-scale x86 head-mounted computer capable of running PC-class Intel processors. You can plug it into the monitor and you can see a Windows desktop.

We mentioned earlier that Project Alloy is an open reference platform. Intel hopes that companies interested in making similar products will use it as their starting point (of course, Intel also wants to sell these chips to these companies). However, Project Alloy itself continues to develop, and it is expected that it will not reach a final level for reference later this year.

While some of the capabilities that have been revealed have impressed us (such as vision, tracking and integration from the inside out), there is still room for improvement. The new version of the headphone is already under development. Developers who work closely with the device have already filled in some of the upcoming improvements.

Computer Vision Upgrade

Perhaps the most important improvement is that Project Alloy significantly enhances computer vision capabilities. Current Project Alloy uses Intel RealSense camera technology for real-time depth mapping, but deep data with low latency, small fields of view, and sparse density still need to be continuously refined.

The next version of Project Alloy will include a new generation of RealSense cameras that will be used with the dedicated Movidious computer vision processing chip, which was acquired by Intel last year. The combination of the two technologies means better and faster depth mapping, which will allow Intel to take a step closer to the "merged reality" vision of mapping real-world things into virtual environments.

Increased visibility

Another change that surprised us was the increase in headshot. Intel did not elaborate on most of the current basic specifications of Project Alloy, including resolution and field of view, but in our actual experience, we were quite satisfied with the field of vision and felt comparable to Vive and Rift. At present, Project Alloy has used Fresnel lens, so it is unclear what to use to make further improvement, but we strongly support any improvement in this area.

Powerful CPU with enhanced integrated graphics

The next version of Project Alloy comes with Intel's latest 7th generation "Kaby Lake" processor. The company said that the new chip is faster and more energy-efficient than before, which plays a significant role in independent battery life. The chip also has improved image performance for integrated graphics, which is also very important, because the head display does not have a powerful desktop-level independent GPU support.

Project Alloy is already a good start for Intel, and the next improvements will make the prototype more complete. We hope to see the company make progress in this area. Yes, for a completely independent device, packed with 10 separate sensors, it is quite compact. However, it still needs to be smaller and lighter in order to allow users to wear it for a long time.

At present, we do not know whether Intel is likely to reduce the size of the device. Lens focusing capability has physically defined the distance between the head-up lens and the screen, but intelligent integration of on-board electronics and sensors may be a better direction for the next step until a new display technology can solve the focal length. problem.

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