IP Library › Granted Patent US 12,361,598
Granted Patent B2
US 12,361,598 · App. 18/032,109 · Granted Jul 15, 2025

Point cloud data transmission method, point cloud data transmission device, point cloud data reception method, and point cloud data reception device

Inventors: Hyunmook Oh (Seoul, KR); Sejin Oh (Seoul, KR)
Assignee: LG Electronics Inc.
G06T9/001
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Quick Facts
Patent No.
US 12,361,598
App. No.
18/032,109
Granted
Jul 15, 2025
Kind
B2
Abstract

A point cloud data transmission method according to embodiments may comprise the steps of: encoding point cloud data; and transmitting a bitstream including the point cloud data. Further, a point cloud data transmission device according to embodiments may comprise: an encoder for encoding point cloud data; and a transmitter for transmitting a bitstream including the point cloud data. Further, a point cloud data reception method according to embodiments may comprise the steps of: receiving a bitstream including point cloud data; and decoding the point cloud data. Further, a point cloud data reception device according to embodiments may comprise: a receiver for receiving a bitstream including point cloud data; and a decoder for decoding the point cloud data.

Claims (58)

1. A point cloud data transmission method by a device, comprising:

converting a coordinate of point cloud data from a Cartesian coordinate to a spherical coordinate;

encoding geometry data of the point cloud data;

converting a coordinate of reconstructed geometry data from the Cartesian coordinate to the spherical coordinate which includes at least one of a scaled radius, an angular identifier or a laser identifier;

encoding attribute data of the point cloud data; and

transmitting a bitstream including the point cloud data,

wherein the bitstream includes information for a scale factor related to the spherical coordinate for the attribute data.

2. The point cloud data transmission method of claim 1 ,

wherein the spherical coordinate include at least one of an azimuthal angle or an elevation angle,

wherein the azimuthal angle or the elevation angle is adjusted based on an index.

3. The point cloud data transmission method of claim 1 , wherein the specific coordinate includes at least one of a spherical coordinate system, a cylindrical coordinate system, or a circular-sector-shaped coordinate system.

4. The point cloud data transmission method of claim 1 , wherein the bitstream includes information about a geometry coding coordinate system, an attribute coding coordinate system, and an output coordinate system.

5. The point cloud data transmission method of claim 4 , wherein the information about the output coordinate system includes information about a coordinate system including at least one of an index-adjusted coordinate value or a scaled coordinate value.

6. A point cloud data transmission device, comprising:

a memory; and

at least one processor connected to the memory, wherein the at least one processor is configured to:

convert a coordinate of point cloud data from a Cartesian coordinate to a spherical coordinate;

encode geometry data of the point cloud data;

convert a coordinate of reconstructed geometry data from the Cartesian coordinate to the spherical coordinate which includes at least one of a scaled radius, an angular identifier or a laser identifier;

encode attribute data of the point cloud data; and

transmit a bitstream including the point cloud data,

wherein the bitstream includes information for a scale factor related to the spherical coordinate for the attribute data.

7. The point cloud data transmission device of claim 6 ,

wherein the spherical coordinate include at least one of an azimuthal angle or an elevation angle, and

wherein the azimuthal angle or the elevation angle is adjusted based on an index.

8. The point cloud data transmission device of claim 6 ,

wherein the bitstream includes information about a geometry coding coordinate system, an attribute coding coordinate system, and an output coordinate system, and

wherein the information about the output coordinate system includes information about a coordinate system including at least one of an index-adjusted coordinate value or a scaled coordinate value.

9. A point cloud data reception method by a device, comprising:

receiving a bitstream including point cloud data, and

decoding geometry data of the point cloud data;

converting a coordinate of the point cloud data from a spherical coordinate to a Cartesian coordinate;

converting the coordinate of the point cloud data from the Cartesian coordinate to the spherical coordinate which includes at least one of a scaled radius, an angular identifier or a laser identifier; and

decoding attribute data of the point cloud data,

wherein the bitstream includes information for a scale factor related to the spherical coordinate for the attribute data.

10. The point cloud data reception method of claim 9 ,

wherein the spherical coordinate include at least one of an azimuthal angle or an elevation angle, and

wherein the azimuthal angle or the elevation angle is adjusted based on an index.

11. The point cloud data reception method of claim 9 ,

wherein the specific coordinate includes at least one of at least one of a Cartesian coordinate system, a spherical coordinate system, a cylindrical coordinate system, or a circular-sector-shaped coordinate system.

12. The point cloud data reception method of claim 9 ,

wherein the bitstream includes information about a geometry coding coordinate system, an attribute coding coordinate system, and an output coordinate system.

13. The point cloud data reception method of claim 12 , wherein the information about the output coordinate system includes information about a coordinate system including at least one of an index-adjusted coordinate value or a scaled coordinate value.

14. A point cloud data reception device, comprising:

a memory; and

at least one processor connected to the memory, wherein the at least one processor is configured to:

receive a bitstream including point cloud data, and

decode geometry data of the point cloud data:

convert a coordinate of the point cloud data from a spherical coordinate to a Cartesian coordinate;

convert the coordinate of the point cloud data from the Cartesian coordinate to the spherical coordinate which includes at least one of a scaled radius, an angular identifier or a laser identifier; and

decode attribute data of the point cloud data,

wherein the bitstream includes information for a scale factor related to the spherical coordinate for the attribute data.

15. The point cloud data reception device of claim 14 ,

wherein the spherical coordinate include at least one of an azimuthal angle or an elevation angle, and

wherein the azimuthal angle or the elevation angle is adjusted based on an index.

16. The point cloud data reception device of claim 14 ,

wherein the bitstream includes information about a geometry coding coordinate system, an attribute coding coordinate system, and an output coordinate system.

17. The point cloud data reception device of claim 16 , wherein the information about the output coordinate system includes information about a coordinate system including at least one of an index-adjusted coordinate value or a scaled coordinate value.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 14, 2023
From: OH, HYUNMOOK; OH, SEJIN
To: LG ELECTRONICS INC.
Reel/Frame 063330/0892 →
Priority Claims (1)
KR 10-2020-0134522 · Oct 16, 2020 · national
Continuity (1)
Related Publication 20230419552A1 · Dec 28, 2023
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