IP Library › Granted Patent US 12,069,549
Granted Patent B2
US 12,069,549 · App. 17/850,604 · Granted Aug 20, 2024

Multiple zone configuration

Inventors: Prateek Basu Mallick (Dreieich, DE); Karthikeyan Ganesan (Kronberg im Taunus, DE); Joachim Loehr (Wiesbaden, DE); Ravi Kuchibhotla (Chicago, IL); Alexander Johann Maria Golitschek Edler von Elbwart (Darmstadt, DE)
Assignee: Lenovo (Singapore) Pte. Ltd.
H04W4/40H04W4/023H04W4/029H04W72/20
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Quick Facts
Patent No.
US 12,069,549
App. No.
17/850,604
Granted
Aug 20, 2024
Kind
B2
Abstract

Apparatuses, methods, and systems are disclosed for multiple zone configuration. One method includes configuring a first device with first information indicating a first zone configuration comprising a first plurality of zones. The method includes configuring the first device with second information indicating a second zone configuration comprising a second plurality of zones, wherein: a first area corresponding to zones of the first plurality of zones is smaller than a second area corresponding to zones of the second plurality of zones; and the first plurality of zones corresponds to a same geographical area as the second plurality of zones.

Claims (35)

1. A user equipment (UE), comprising:

at least one memory; and

at least one processor coupled with the at least one memory and configured to cause the UE to:

receive, from a network entity, a zone configuration;

receive, from a second UE, sidelink control information (SCI) indicating a sidelink range and a zone identifier corresponding to a zone of the zone configuration;

determine a distance to the second UE, wherein the distance is based on the zone identifier and a value of a zone configuration parameter associated with the zone configuration; and

transmit, to the second UE, feedback based on a comparison between the sidelink range and the determined distance to the second UE.

2. The UE of claim 1 , wherein the distance is determined based on a respective distance between the UE and a central location of the zone associated with the zone identifier.

3. The UE of claim 1 , wherein the value of the zone configuration parameter comprises a zone length.

4. The UE of claim 3 , wherein the zone length is equal to a zone width.

5. The UE of claim 1 , wherein the distance to the second UE is computed as follows: √((N z_pm +1)*Z L ) 2 +((N Z_l +1)*Z W ) 2 wherein N z_pm is a number of zones along a prime meridian between a first zone of the UE and a second zone of the second UE, Z L is a zone length, N Z_l is number of zones along a latitude between the first zone and the second zone, and Z W is a zone width.

6. The UE of claim 1 , wherein the distance to the second UE is computed as follows: |G p1 -G p2 |, wherein G p1 is an exact geographical position of a center of a first zone of the UE, G at is an exact geographical position of a center of a second zone of the second UE, and wherein the distance corresponds to an absolute difference between G p1 and G p2 .

7. The UE of claim 1 , wherein the at least one processor is configured to cause the UE to determine that the sidelink range is more than the determined distance to the second UE, and wherein the feedback is transmitted based on the sidelink range being more than the determined distance to the second UE.

8. A method performed by a user equipment (UE), the method comprising:

receiving, from a network entity, a zone configuration;

receiving, from a second UE, sidelink control information (SCI) indicating a sidelink range and a zone identifier corresponding to a zone of the zone configuration;

determining a distance to the second UE, wherein the distance is based on the zone identifier and a value of a zone configuration parameter associated with the zone configuration; and

transmitting, to the second UE, feedback based on a comparison between the sidelink range and the determined distance to the second UE.

9. The method of claim 8 , wherein the distance is determined based on a respective distance between the UE and a central location of the zone associated with the zone identifier.

10. The method of claim 8 , wherein the distance to the second UE device is computed as follows: √((N z_pm +1)*Z L ) 2 +((N Z_l +1)*Z W ) 2 , wherein N z_pm is a number of zones along a prime meridian between a first zone of the first device and a second zone of the second UE, Z L is a zone length, N Z_l is number of zones along a latitude between the first zone and the second zone, and Z W is a zone width.

11. The method of claim 8 , wherein the distance to the second UE is computed as follows: |G p1 -G p2 |, wherein G p1 is an exact geographical position of a center of a first zone of the first UE, G p2 is an exact geographical position of a center of a second zone of the second device, and wherein the distance corresponds to an absolute difference between G p1 and G p2 .

12. The method of claim 8 , further comprising determining that the sidelink range is more than the determined distance to the second UE, wherein the feedback is transmitted based on the sidelink range being more than the determined distance to the second UE.

13. A second user equipment (UE), comprising:

at least one memory; and

at least one processor coupled with the at least one memory and configured to cause the UE to:

transmit, to a first UE, sidelink control information (SCI) indicating a sidelink range and a zone identifier corresponding to a zone of a zone configuration; and

receive, from the first UE, feedback based on a comparison between the sidelink range and a distance from the first UE to the second UE, wherein the distance is based on the zone identifier and a value of a zone configuration parameter associated with the zone configuration.

14. The second UE of claim 13 , wherein a respective distance between the first UE and a central location of the zone associated with the zone identifier is determined.

15. The second UE of claim 13 , wherein the distance to the second UE is computed as follows: √((N z_pm +1)*Z L ) 2 +((N Z_l +1)*Z W ) 2 , wherein N z_pm is a number of zones along a prime meridian between a first zone of the first UE and a second zone of the second UE, Z L is a zone length, N z_l is number of zones along a latitude between the first zone and the second zone, and Z W is a zone width.

16. The second UE of claim 13 , wherein the distance to the second UE is computed as follows: |G p1 -G p2 |, wherein G p1 is an exact geographical position of a center of a first zone of the first UE apparatus, G p2 is an exact geographical position of a center of a second zone of the second UE, and wherein the distance corresponds to an absolute distance between G p1 and G p2 .

17. The second UE of claim 13 , wherein the sidelink range is more than the distance to the second UE, and th wherein the feedback is received based on the sidelink range being more than the determined distance to the second UE.

18. A method performed by a second user equipment (UE), the method comprising:

transmitting, to a first UE, sidelink control information (SCI) indicating a sidelink range and a zone identifier corresponding to a zone of a zone configuration; and

receiving, from the first UE, feedback based on a comparison between the sidelink range and a distance from the first UE to the second UE, wherein the distance is based on the zone identifier and a value of a zone configuration parameter associated with the zone configuration.

19. The method of claim 18 , wherein a respective distance between the first UE and a central location of the zone associated with the zone identifier is determined.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 30, 2022
From: MALLICK, PRATEEK BASU; GANESAN, KARTHIKEYAN; LOEHR, JOACHIM; KUCHIBHOTLA, RAVI; GOLITSCHEK EDLER VON ELBWART, ALEXANDER JOHANN MARIA
To: LENOVO (SINGAPORE) PTE. LTD.
Reel/Frame 060370/0579 →
Continuity (3)
Continuation 16851483 · Apr 17, 2020
Provisional Application 62835847 · Apr 18, 2019
Related Publication 20220329992A1 · Oct 13, 2022
Cited By (1)
US 12,418,380