Multi-angle virtual staging

Most virtual staging works one photo at a time, so the same room shot from two corners comes back with two different sofas. Renov stages the room, not the photo: every angle is rendered from one 3D model, so the furniture is identical everywhere.

Why single-photo staging breaks across angles

An image model that sees one photo invents furniture for that photo. Give it the next photo of the same room and it invents again: a different sofa, a rug that changes size, a lamp that moves to the other side. Buyers notice, and a listing that contradicts itself reads as fake.

How Renov keeps every angle the same

  • All photos of a room are reconstructed together into one 3D room, with the cameras placed where they stood.
  • Each product is a real 3D model, placed once on the floor or a wall of that room.
  • Every angle is a view of that same scene, so position, size and orientation cannot drift.
  • The render reads each product's catalogue photo, so colour and material match across angles too.

What you can do with it

  • Stage a room shot from two to eight or more angles.
  • Move, turn or swap a piece once and see it change in every photo.
  • Connect two rooms so the living room shows through the hallway door, staged.
  • Render each angle in one of 14 lights, from the photo's own light to golden hour or night.

Pricing per room, not per photo

A room costs 10 credits and includes up to 4 angles with 3 pictures each. A credit is €0.70 to €1 depending on how many you buy, so a room comes to €5.53 to €10. Your first room is free.

Questions

What is multi-angle virtual staging?
Staging every photo of a room with the same furniture, in the same place, so the photos agree with each other. Renov does it by rendering every angle from one 3D model of the room.
How many angles can I stage?
As many as you shot. A room includes 4 angles, and each extra angle is 2 credits.
Do I need special photos?
No. Use the listing photos you already have. More photos of the same room that overlap give a better 3D model.