IP Library Patent Application 18938790
Patent Application
App. No. 18/938,790

VIRTUAL AND REAL OBJECT RECORDING IN MIXED REALITY DEVICE

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Quick Facts
Patent No.
US None
App. No.
18/938,790
Abstract

A virtual image generation system for use by an end user comprises memory, a display subsystem, an object selection device configured for receiving input from the end user and persistently selecting at least one object in response to the end user input, and a control subsystem configured for rendering a plurality of image frames of a three-dimensional scene, conveying the image frames to the display subsystem, generating audio data originating from the at least one selected object, and for storing the audio data within the memory.

Claims (32)

1 . A virtual image generation system for use by a playback user, comprising:

memory configured for storing audio content data and video content data originating from at least one object in an original spatial environment;

a plurality of speakers;

a display subsystem;

a control subsystem configured for retrieving the audio content data and video content data from the memory, respectively rendering audio and video from the retrieved audio content data and video content data in a new spatial environment different from the original spatial environment, and synchronously conveying the rendered audio to the speakers and the generated video data to the display subsystem.

2 . The virtual image generation system of claim 1 , wherein the control subsystem is configured for storing the audio content data and video content data in the memory.

3 . The virtual image generation system of claim 2 , further comprising an object selection device configured for receiving input from an end user and persistently selecting the at least one object in the original spatial environment in response to the end user input prior to storage of the audio content data and video content data in the memory.

4 . The virtual image generation system of claim 2 , wherein the at least one object comprises a real object.

5 . The virtual image generation system of claim 4 , further comprising a microphone assembly configured for capturing the audio content data from the real object in the original spatial environment.

6 . The virtual image generation system of claim 5 , wherein the microphone assembly is configured for generating an audio output, wherein the control subsystem is further configured for modifying the direction the audio output to preferentially sense sounds originating from the selected real object, wherein the audio content data is derived from the modified audio output.

7 . The virtual image generation system of claim 3 , further comprising one or more cameras configured for capturing the video data from the selected real object in the original spatial environment.

8 . The virtual image generation system of claim 7 , wherein the control subsystem is configured for transforming the captured video data into virtual content data for the selected real object, and storing the virtual content data as the video content data in the memory.

9 . The virtual image generation system of claim 1 , wherein the at least one object comprises a virtual object.

10 . The virtual image generation system of claim 9 , further comprising a database configured for storing content data corresponding to sounds for a plurality of virtual objects, wherein the control subsystem is further configured for acquiring the content data corresponding to the virtual object from the database, and the audio data stored in the memory comprises the acquired content data.

11 . The virtual image generation system of claim 1 , wherein the control subsystem is configured for acquiring absolute meta data corresponding to the at least one object in the new spatial environment, and rendering the audio from the retrieved audio content data and the absolute meta data in the new spatial environment.

12 . The virtual image generation system of claim 11 , further comprising one or more sensors configured for tracking a head pose of the playback user, wherein the control subsystem is further configured for localizing the absolute meta data to the playback user based on the tracked head pose of the playback user, such that the rendered audio is spatialized.

13 . The virtual image generation system of claim 11 , wherein acquiring the absolute meta data corresponding to the at least one object in the new spatial environment comprising positioning the at least one object in the new spatial environment.

14 . The virtual image generation system of claim 13 , further comprising a user input device configured for receiving input from the playback user, and wherein the control subsystem is configured for positioning the at least one object in the new spatial environment in response to the input from the playback user.

15 . The virtual image generation system of claim 1 , wherein the display subsystem is configured for being positioned in front of the eyes of the playback user.

16 . The virtual image generation system of claim 15 , wherein the display subsystem includes a projection subsystem and a partially transparent display surface, the projection subsystem configured for projecting image frames onto the partially transparent display surface in response to the video data, and the partially transparent display surface is configured for being positioned in the field of view between the eyes of the playback user and the new spatial environment.

17 . The virtual image generation system of claim 15 , further comprising a frame structure configured for being worn by the playback user, the frame structure carrying at least a portion of the display subsystem.

18 . A method of operating a virtual image generation system by a playback user to play back audio and video of at least one object previously recorded in an original spatial environment as audio content data and video content data, the method comprising:

retrieving the audio content data and video content data from memory;

respectively rendering audio and video from the retrieved audio content data and video content data in a new spatial environment different from the original spatial environment;

respectively transforming the audio and video into sound and image frames; and

synchronously conveying the sound and image frames to the playback user.

19 . The method of claim 18 , further comprising:

storing the audio content data and video content data in the memory; and

persistently selecting the at least one object in the original spatial environment prior to storage of the audio content data and video content data in the memory.

20 . The method of claim 19 , wherein the at least one object comprises a real object, the method further comprising:

capturing the audio content data from the real object; and

preferentially sensing sounds originating from the selected real object relative to sounds originating from other real objects, wherein the audio content data is derived from the preferentially sensed sounds.

Assignments (2)
SECURITY INTEREST Recorded Oct 29, 2025
From: MAGIC LEAP, INC.; MENTOR ACQUISITION ONE, LLC; MOLECULAR IMPRINTS, INC.
To: CITIBANK, N.A., AS COLLATERAL AGENT
Reel/Frame 073438/0463 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 30, 2025
From: HUANG, ZIQIANG
To: MAGIC LEAP, INC.
Reel/Frame 071885/0023 →