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If the last applies to you, you're likely a computer scientist or engineer, many of whom now avoid the words virtual reality even while they work on technologies most of us associate with VR. Today, you're more likely to hear someone use the words virtual environment (VE) to refer to what the public knows as virtual reality. We'll use the terms interchangeably in this article. https://www.aliexpress.com/item/35mm-Merry-Christmas-baking-biscuit-decoration-stickers-four-styles-labels-360-pcs-lot-Item-No-FE28/32834810215.html
To fully experience PC games and other software in 3D, you'll need a player or computer that is capable of delivering high-quality graphics to a virtual reality headset. This requires a player or computer with a powerful graphics card and processor. It's also recommended that your computer have at least 8GB of RAM in order to download VR content. The number of VR-ready PCs continues to grow, so you'll have a variety of options to choose from in order to enjoy smooth gameplay, even when running graphics-heavy games. https://www.youtube.com/channel/UC6NkTCJimTbM1KKCHkpL4uw
In 2001, SAS Cube (SAS3) became the first PC-based cubic room, developed by Z-A Production (Maurice Benayoun, David Nahon), Barco, and Clarté. It was installed in Laval, France. The SAS3 library gave birth to Virtools VRPack. In 2007, Google introduced Street View, a service that shows panoramic views of an increasing number of worldwide positions such as roads, indoor buildings and rural areas. It also features a stereoscopic 3D mode, introduced in 2010.[24] https://www.youtube.com/watch?v=f7nNJ-BqLoA&t=1s
If the last applies to you, you're likely a computer scientist or engineer, many of whom now avoid the words virtual reality even while they work on technologies most of us associate with VR. Today, you're more likely to hear someone use the words virtual environment (VE) to refer to what the public knows as virtual reality. We'll use the terms interchangeably in this article. https://www.aliexpress.com/item/Insta360-Pro-8K-360-VR-Video-Camera-4K-100fps-Slow-Motion-Anti-shake-Panoramic-Camera-VR/32832297122.html
Expand your media adventures and social gaming communities with accessories and peripherals created for virtual reality. For example, a VR controller offers seamless integration with virtual reality games to give you more control over your virtual environment. Beyond PC gaming, virtual reality experiences also encompass other forms of video. Virtual reality-compatible cameras capable of filming in 360 degrees offer you the chance to view and edit your footage, along with other VR-ready components. https://www.youtube.com/watch?v=a54H2V06dqw&t=1s
Although much more time and data intensive, I do foresee 360° and VR as being a growing trend of the future. I think the tools and software will continue to improve and the real world applications will start to become more obvious (i.e. behind-the-scenes where you could actually see everything, car cams so that every angle was captured, real estate videos, etc). I’m excited to continue learning about it and continue shooting on my 360° camera. https://www.youtube.com/watch?v=axkik-8oFTs&t=1s
The trade-off, besides the clunky cables, is the price. The least expensive tethered options are currently around $400. And that's before you address the processing issue; the Rift S and the Vive both need pretty powerful PCs to run, while the PS VR requires a PlayStation 4. If the cost isn't a deal breaker but the cables are, HTC offers a wireless adapter for the Vive, but it requires a desktop PC with a free PCIe slot to work. There are also third-party wireless adapters for the Rift, but we can't guarantee how well they work.
In 1999, entrepreneur Philip Rosedale formed Linden Lab with an initial focus on the development of VR hardware. In its earliest form, the company struggled to produce a commercial version of "The Rig", which was realized in prototype form as a clunky steel contraption with several computer monitors that users could wear on their shoulders. The concept was later adapted into the personal computer-based, 3D virtual world program Second Life.[23] https://www.youtube.com/watch?v=q-keAwnqwRQ&t=1s
Morton Heilig wrote in the 1950s of an "Experience Theatre" that could encompass all the senses in an effective manner, thus drawing the viewer into the onscreen activity. He built a prototype of his vision dubbed the Sensorama in 1962, along with five short films to be displayed in it while engaging multiple senses (sight, sound, smell, and touch). Predating digital computing, the Sensorama was a mechanical device. Heilig also developed what he referred to as the "Telesphere Mask" (patented in 1960). The patent application described the device as "a telescopic television apparatus for individual use...The spectator is given a complete sensation of reality, i.e. moving three dimensional images which may be in colour, with 100% peripheral vision, binaural sound, scents and air breezes."[6] https://www.youtube.com/watch?v=-WibA2c6jMA&t=1s
In 2013, Valve Corporation discovered and freely shared the breakthrough of low-persistence displays which make lag-free and smear-free display of VR content possible.[31] This was adopted by Oculus and was used in all their future headsets. In early 2014, Valve showed off their SteamSight prototype, the precursor to both consumer headsets released in 2016. It shared major features with the consumer headsets including separate 1K displays per eye, low persistence, positional tracking over a large area, and fresnel lenses.[32][33] HTC and Valve announced the virtual reality headset HTC Vive and controllers in 2015. The set included tracking technology called Lighthouse, which utilized wall-mounted "base stations" for positional tracking using infrared light.[34][35][36] https://www.aliexpress.com/item/Pre-order-Insta360-Nano-360-Degree-Panoramic-Camera-3K-HD-VR-Camera/32709297694.html
Standalone headsets were at first a useful novelty that offered a taste of VR without an investment into a gaming PC or a flagship phone. The Oculus Go and the Lenovo Mirage Solo are both capable headsets that work well on their own, but they have the same limited controls as mobile headsets. The recently released Oculus Quest, however, has really sold us on this category. The Quest uses similar outward-facing cameras to the new Rift S to provide 6DOF motion tracking, and uses the same Oculus Touch motion controls. Combined with a faster Snapdragon 835 processor compared with the Oculus Go's Snapdragon 821, the Quest offers a much more compelling and immersive VR experience, all without the unwieldy cable or PC requirement of the Rift S. We hope to see more standalone 6DOF, dual motion controller headsets in the future, like the upcoming HTC Vive Focus Plus. https://www.youtube.com/watch?v=hmnkcP-sJHk&t=1s
After doing this over and over, revision after revision, eventually I have a final draft to export. In the export window, it is important that I ensure the “VR” is still enabled. What this does is put that specification in the metadata file so that sites like YouTube and Vimeo know to play it as 360° VR footage. Then I can upload it and ensure the playback is the way I want it. https://www.youtube.com/watch?v=tkIg-SxPzTA&t=1s
In 2014, Sony announced Project Morpheus (its code name for the PlayStation VR), a virtual reality headset for the PlayStation 4 video game console.[37] In 2015, Google announced Cardboard, a do-it-yourself stereoscopic viewer: the user places their smartphone in the cardboard holder, which they wear on their head. Michael Naimark was appointed Google's first-ever 'resident artist' in their new VR division. The Kickstarter campaign for Gloveone, a pair of gloves providing motion tracking and haptic feedback, was successfully funded, with over $150,000 in contributions.[38] Also in 2015, Razer unveiled its open source project OSVR. https://www.youtube.com/watch?v=ecajlIKwlCg&t=1s
The HTC Vive has been one of the best VR HMDs on the market since its consumer release back in 2016. Manufactured by HTC, the Vive was the first VR HMD to support SteamVR. The Vive has been locked in fierce competition with the Oculus Rift since release, as both headsets aimed at the same top end of the VR enthusiast market. The Vive has proven itself a durable workhorse for enterprise solutions, while also delivering one of the best consumer VR experiences available. The Vive was first released back in 2016, and has gone through several iterations, with the addition of a wireless module. The Vive Pro came out in 2018 and the Vive Pro Eye and the HTC Vive Cosmos are both slated for release in the second half of 2019. https://www.youtube.com/watch?v=LS_-ZMcGnow&t=1s
In September 2018, Oculus announced the Oculus Quest, the company’s latest stand-alone VR Headset. The Quest uses motion controllers similar to Oculus Touch, has four wide-angle cameras for positional tracking, and sports resolution of 1600×1440 per eye, with option to adjust the lens spacing. The headset launches first half of 2019 and will list for $399.
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Samsung’s approach to VR was different right from the beginning, and the Gear VR was an impressive piece of tech when it was first released in November of 2015. The Gear VR was a far more common sight than an Oculus Rift or HTC Vive in 2016 and 2017, largely because Samsung often gave the device away free with the purchase of a Samsung Galaxy smartphone. Samsung’s VR HMD delivers a stripped-down VR experience, using Oculus head-tracking technology in combination with Android smartphones to power mobile VR experiences. Instead of dedicated display technology, lenses allow the phone’s screen to act as a stereoscopic display, making the device simpler and less expensive than other options. Samsung has added hand controllers to the Gear VR experience, bringing it more in line with current VR content. https://www.youtube.com/watch?v=CNilPKyFlQI&t=1s
Special input devices are required for interaction with the virtual world. These include the 3D mouse, the wired glove, motion controllers, and optical tracking sensors. Controllers typically use optical tracking systems (primarily infrared cameras) for location and navigation, so that the user can move freely without wiring. Some input devices provide the user with force feedback to the hands or other parts of the body, so that the human being can orientate himself in the three-dimensional world through haptics and sensor technology as a further sensory sensation and carry out realistic simulations. Additional haptic feedback can be obtained from omnidirectional treadmills (with which walking in virtual space is controlled by real walking movements) and vibration gloves and suits. https://www.youtube.com/watch?v=GiN4q5ThUxE&t=1s
Vive's Tracker might not look like much, but stick it on something and that "thing" becomes a controller. Yes, HTC is redefining how we think of mixed reality with this accessory, and now anyone can buy one. Developers have been busily finding exciting and unique ways to use the Tracker in games, which will require mounts for certain props, like guns and baseball bats. https://www.aliexpress.com/item/YI-HALO-VR-Camera-3D-360-camera-5GHz-Wi-Fi-2-2-Inch-LCD-Touch-Screen/32835202184.html
No, this isn't a VR-ready look into the huge court case between Uber and Waymo. It's a 360 video that lets you see how Google's fleet of self-driving cars sees the world. You'll "sit" right on top of the car's LIDAR systems and view the world as machine vision sees the world, complete with lots of little graphics pointing out absolutely everything in sight. There is no better way to learn about self-driving technology than this. https://www.youtube.com/watch?v=UnTPrYdGdkg&t=1s
Augmented reality (AR) is a type of virtual reality technology that blends what the user sees in their real surroundings with digital content generated by computer software. The additional software-generated images with the virtual scene typically enhance how the real surroundings look in some way. AR systems layer virtual information over a camera live feed into a headset or smartglasses or through a mobile device giving the user the ability to view three-dimensional images.
Morton Heilig wrote in the 1950s of an "Experience Theatre" that could encompass all the senses in an effective manner, thus drawing the viewer into the onscreen activity. He built a prototype of his vision dubbed the Sensorama in 1962, along with five short films to be displayed in it while engaging multiple senses (sight, sound, smell, and touch). Predating digital computing, the Sensorama was a mechanical device. Heilig also developed what he referred to as the "Telesphere Mask" (patented in 1960). The patent application described the device as "a telescopic television apparatus for individual use...The spectator is given a complete sensation of reality, i.e. moving three dimensional images which may be in colour, with 100% peripheral vision, binaural sound, scents and air breezes."[6] https://www.aliexpress.com/item/Hot-Cold-Shoe-and-YS-Arm-Adapter-360-Degree-Turnable-For-Underwater-Photography-Housing-Arm-Light/32863005192.html
In 1999, entrepreneur Philip Rosedale formed Linden Lab with an initial focus on the development of VR hardware. In its earliest form, the company struggled to produce a commercial version of "The Rig", which was realized in prototype form as a clunky steel contraption with several computer monitors that users could wear on their shoulders. The concept was later adapted into the personal computer-based, 3D virtual world program Second Life.[23] https://www.youtube.com/watch?v=q-keAwnqwRQ&t=1s

To fully experience PC games and other software in 3D, you'll need a player or computer that is capable of delivering high-quality graphics to a virtual reality headset. This requires a player or computer with a powerful graphics card and processor. It's also recommended that your computer have at least 8GB of RAM in order to download VR content. The number of VR-ready PCs continues to grow, so you'll have a variety of options to choose from in order to enjoy smooth gameplay, even when running graphics-heavy games. https://www.youtube.com/watch?v=vbkvB-kljEo&t=1s
Nintendo's Labo series of games/arts-and-crafts sets for the Nintendo Switch have interested us since the first Labo Variety Kit came out. You build your own controllers with cardboard and play games using the Switch and motion-sensing Joy-Con controllers. Now Nintendo has returned to VR (a field it hasn't set foot in since the ill-fated Virtual Boy) with its fourth Labo package, the Labo VR Kit. https://www.aliexpress.com/item/Suntrsi-USB-Flash-Drive-64GB-Metal-Steel-Pen-Drive-High-Speed-Pendrive-Key-Chain-USB-Stick/32398155049.html
Despite being one of the big three in high-end VR, the PS VR is a noticeable step down from the Rift and Vive. It's got a 120Hz refresh rate, which is higher than the others, but it's not as crisp with its 1920 x 1080 resolution, which means things are a little more blurry. Plus, its PS Move controllers feel very long in the tooth; they're repurposed motion controllers from the days when the Nintendo Wii was popular, and feel very outdated when compared to the Rift's Touch controllers. https://www.aliexpress.com/item/NEW-Amkov-VR-360-Handheld-4K-WiFi-360-Degrees-Panoramic-Camera-Dual-HD-Wide-Angle-Fisheye/32960301048.html
These are 360 degree panoramic images captured using rotational cameras with ultra wide-angle lenses. Our award winning 360VR images are full 360 degree spherical panoramic images used in building photographic "Virtual Reality" style virtual tours. You can interactively "be there and look around" with the full realism that expert digital photography can capture. https://www.youtube.com/watch?v=pO4DV5KZClk&t=1s
Now I can start actually editing the timeline, put things to music, figure out transitions and where graphics will go. When I have a first cut of the timeline, I export sections at a time where motion graphics will be. Inside After Effects I can create a 3D camera using their “immersive” tools, convert all motion graphic to 3D layers and create the motion inside the immersive camera view. Viewing and editing on the flat, equirectangular format does little good to anyone. When motion graphics are done, I can export them and replace the original footage in the timeline with the newly exported motion graphic versions. https://www.aliexpress.com/item/Insta360-ONE-4K-360-VR-Video-Action-Sport-Camera-24MP-Bullet-Time-6-Axis-Gyroscope-Support/32842573257.html
Tethered headsets like the Oculus Rift S, the HTC Vive, and the PlayStation VR are physically connected to PCs (or in the case of the PS VR, a PlayStation 4). The cable makes them a bit unwieldy, but putting all of the actual video processing in a box you don't need to directly strap to your face means your VR experience can be a lot more complex. The use of a dedicated display in the headset instead of your smartphone drastically improves image fidelity, and either external sensors or outward-facing cameras on the headset provide full 6DOF movement tracking. https://www.aliexpress.com/item/Drifter-For-Insta360-ONE-X/32947447669.html

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Originally funded as a Kickstarter project in 2012, and engineered with the help of John Carmack (founder of Id Software, of Doom and Quake fame), Oculus became the early leader in Virtual Reality hardware for video games. Facebook bought Oculus in 2014, and brought the company’s high-end VR HMD to market for consumers. More recently, Oculus has seen success with the lower-price, lower-powered Oculus Go, and 2019 will see the release of multiple new iterations on the hardware, including the tethered Rift S and the stand-alone Oculus Quest.
The trade-off, besides the clunky cables, is the price. The least expensive tethered options are currently around $400. And that's before you address the processing issue; the Rift S and the Vive both need pretty powerful PCs to run, while the PS VR requires a PlayStation 4. If the cost isn't a deal breaker but the cables are, HTC offers a wireless adapter for the Vive, but it requires a desktop PC with a free PCIe slot to work. There are also third-party wireless adapters for the Rift, but we can't guarantee how well they work. https://www.aliexpress.com/item/1000-stickers-lot-38mm-diameter-handmade-Self-adhesive-kraft-paper-sealing-label-sticker-Item-No-TK26/32790505413.html

One place Microsoft has succeeded in how easy it is to set up its WMR headsets. It uses inside-out tracking, so you won't need to go plug in a bunch of sensors to make sure your headset is being seen. These headsets have built-in cameras and sensors that handle all of that. They'll even track the Windows Mixed Reality controllers, which suffer a bit because they rely on the headset being able to see them clearly to properly track. https://www.aliexpress.com/item/Insta360-ONE-X-Sports-Action-Camera-5-7K-Video-VR-360-For-iPhone-and-Android/32944157625.html


In aviation, medicine, and the military, Virtual Reality training is an attractive alternative to live training with expensive equipment, dangerous situations, or sensitive technology. Commercial pilots can use realistic cockpits with VR technology in holistic training programs that incorporate virtual flight and live instruction. Surgeons can train with virtual tools and patients, and transfer their virtual skills into the operating room, and studies have already begun to show that such training leads to faster doctors who make fewer mistakes. Police and soldiers are able to conduct virtual raids that avoid putting lives at risk. https://www.aliexpress.com/item/Hot-Lazy-Susan-Ball-Bearing-Swivel-Plate-Metal-Swivel-Plate-Rotation-360-Degree-Galvanized/32963744645.html
This seems simple enough in theory (simple is relative), but in practice, shooting in 360° requires a whole new mindset. Typically, when shooting a video, I would just stand behind the camera. But with 360° video, I’d be in the shot no matter where I stand. How can I light my model with studio lights, if the studio lights would also always be in the shot? How do I capture audio? How do I do camera movements? These are all questions that have to have a solution. https://www.youtube.com/watch?v=Wrcqqhn-unA&t=1s
The Fove setup is an 5.7-inch, 1440p display; a 100+ degree field of view; 70fps frame rate; and eye-tracking measured at 120fps. With the redesigned developer kit, gone are the big side panels and quite a lot of the heft of the last prototype design. The company promises the new model offers "dramatically reduced weight, size and overall wearability, as well as better production efficiency." You might have to wait a bit though – Fove hasn't confirmed plans for the consumer version just yet.

In 2013, Valve Corporation discovered and freely shared the breakthrough of low-persistence displays which make lag-free and smear-free display of VR content possible.[31] This was adopted by Oculus and was used in all their future headsets. In early 2014, Valve showed off their SteamSight prototype, the precursor to both consumer headsets released in 2016. It shared major features with the consumer headsets including separate 1K displays per eye, low persistence, positional tracking over a large area, and fresnel lenses.[32][33] HTC and Valve announced the virtual reality headset HTC Vive and controllers in 2015. The set included tracking technology called Lighthouse, which utilized wall-mounted "base stations" for positional tracking using infrared light.[34][35][36] https://www.youtube.com/watch?v=LD4ryByjVyo&t=1s
The Oculus Touch controllers have made a world of difference since their arrival. Compared to the other headsets' controllers, they're our favourite – they conform to your hand and allow for some finger recognition, like a thumbs-up. Not just that, but when it comes to games Oculus has come on leaps and bounds. That's been largely helped by some developer cash injections from Facebook, giving us quality, polished titles like Lone Echo and Robo Recall. Room-scale support has been added too, though you'll need to purchase at least one additional sensor to get it to Vive-level tracking, and even then the Vive tracking experience is a little better in our experience. https://www.aliexpress.com/item/360-VR-1080P-HD-16GB-Wifi-IP-Camera-Panoramic-Smart-LED-Lights-Bulb-Camera-Video-Surveillance/32794405770.html
Currently standard virtual reality systems use either virtual reality headsets or multi-projected environments to generate realistic images, sounds and other sensations that simulate a user's physical presence in a virtual environment. A person using virtual reality equipment is able to look around the artificial world, move around in it, and interact with virtual features or items. The effect is commonly created by VR headsets consisting of a head-mounted display with a small screen in front of the eyes, but can also be created through specially designed rooms with multiple large screens. Virtual reality typically incorporates auditory and video feedback, but may also allow other types of sensory and force feedback through haptic technology. https://www.youtube.com/watch?v=3V15IB3pc94&t=1s
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