> What am I missing?
So much.
> This is an absolutely standard feature of any VR headset that has ever been released in the history of VR headsets
The article is describing "room scale positioning". The first consumer available headset to offer this was released in 2016.
It may feel like it's been around forever if you're not familiar with the space except as a consoomer, but exploring a 3d space at room scale has only recently come into the realm of possibility for consumer grade headsets. For much of the 80s and 90s (and 00s), it was head tracking only. Real time positioning and moving around required positioning hardware that was a magnitude more expensive. Sure, it existed to some degree, but it was such inexpensive addition that using an expensive and complicated treadmill was often considered the economical choice.
In fact, I don't think there was even a "professional" solution that offered room scale positioning before the vive. Previously, they all had specific limitations like a 4 x 4 foot area or were massive tech demos that existed in a quantity of one in a university basement somewhere, running a very tailored demo.
> Make a 3D world, walk through it.
First of all, how do you map the room? Do you set up lighthouses? Low latency positioning? To do what is in the article, you need a large space and the ability to map into it. Only recently, has "inside out" tracking become feasible. Previous generations didn't have it, and it's almost a guaranteed requirement for any large scale deployment of VR - for example, exploring multiple rooms.
Second, how do you create the room? It may seem simple, but VR headsets require more than double the computation, and that means that any geometry and graphics you inert of the world needs to be within the compute budget of the headset solution. The fact that the person in the article was able to just export a USDC directly out of fusion and have it render without hitting the compute budget limit is amazing and really speaks to the graphical power of the AVP.
Lastly, stitching, the 3-D solution and compositing, and the real world is a very difficult problem. Again, it may feel like we've had the technology, but really we haven't had the high speed camera solutions in small packages, and the compute power to process all of that in anything approaching a consumer solution. To do what AVP is doing with the USDC files, composing them into the real world, and even applying lighting information, previously would have required a fleet of large and expensive machines. And that doesn't even include transparency and applying real-world attributes of lighting and reflection onto the USDZ file, a a task that's hard to parallelize.
Though this is especially helpful for old homes where you have to sort of improvise ethernet wiring.
I normally just use it to consume 4k hdr media though.
It has not lived up to being a utility player device, but so far it is so good at media delivery that is sort of okay.
Just thought I’d raise this since it weirdly isn’t mentioned in the article.
I used a similar technique the last time I moved - scan the apartment using the iPhone, then I had a 3D model for measuring and planning out the space before/during the move. It’s a big help when planning out furniture etc.
And I scanned my old place before leaving so I can virtually step into it any time I want. iPhone via finder/preview handles showing 3D models in AR out of the box.
mjorgers•36m ago
pfraze•33m ago
CameronBanga•31m ago
It's clear that it is the future. But there's still some steps between where Apple is at with it today, and where it needs to be in order to be a mainstream product. I would look and see if you can find one used either in the local market, or via a short trip if possible.
tough•25m ago
heaney-555•22m ago
Instead, what will happen is that it will get gradually slimmer and lighter with each generation, a few hundred grams at a time.
ahar083•22m ago
nullishdomain•18m ago
nervousvarun•5m ago
dmarcos•6m ago