Generally speaking now; The technology doesn't exist yet and because it doesn't exist means it cannot evolve or gather data in it's own form- which might lead to greater forms of surrveying. The data gathered can be used to map where the light parallaxes take place, baby steps baby steps.
The fact that it will work within our own solar system is a stretch. It's not even prototyped. However if it comes down to it, there would need to be an array of satellites around the planet which are as far outside all interference created by the planet but within where it doesn't...
The algorithm i'm describing would apply if you tild your illustration as to show the celestial object in front of the planet Earth, and the signal red over it more (if you can imagine it). The triangles would be the data collecter and sender.
That is a great illustration indeed. Now think about OpenGL making everything out of triangles. It would be possible to map xyz on the lowest level directly to GL.
That is the obvious first step, is to make a drone like laser technology; and by drone-like i mean like marine drones or whatever that are used to gather important environmental features. the hologram is obviously just almost impossible before certain steps are taken and the drone-laser step is...
The future of space exploration is holographic.
Light is clearly not a constant, and even if it is; it can be projected in such a manner with the correct algorithms that feedback can be received from it. Many particles can be transmitted via laser over vast distances to project humanoid...