IP Library Granted Patent US 12684364
Granted Patent B2
US 12684364 · App. 18/412,980 · Granted Jul 14, 2026

Communication device with spatial reuse mechanism for scheduling transmission and associated transmission schedule method

Inventor: Cheng-Feng Lin (HsinChu, TW)
Assignee: Realtek Semiconductor Corp.
H04W16/14H04W72/0446H04W72/046H04W76/15
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12684364
App. No.
18/412,980
Granted
Jul 14, 2026
Kind
B2
Abstract

A communication device respectively establishes a plurality of wireless communication connections with a plurality of predetermined devices in an infrastructure network, and includes a wireless transceiver and a processor. The wireless transceiver transmits or receives wireless signals. The processor selects a spatial reuse mechanism, generates spatial reuse information according to the spatial reuse mechanism, and transmits at least one packet carrying the spatial reuse information to the predetermined devices. The spatial reuse information defines a pattern of a communication period. The communication period comprises a spatial reuse phase and a non-spatial reuse phase. The spatial reuse information comprises time information of at least one of the spatial reuse phase and the non-spatial reuse phase. In response to a selection of the spatial reuse mechanism, the processor suspends a wireless signal transmission with the predetermined devices during the spatial reuse phase.

Claims (35)

1 . A communication device, respectively establishing a plurality of wireless communication connections with a plurality of predetermined devices in an infrastructure network, comprising:

a wireless transceiver, arranged to transmit or receive a plurality of wireless signals; and

a processor, arranged to select a spatial reuse mechanism, generate spatial reuse information according to the spatial reuse mechanism, and transmit at least one packet carrying the spatial reuse information to the plurality of predetermined devices;

wherein the spatial reuse information defines a pattern of a communication period, the communication period comprises a spatial reuse phase and a non-spatial reuse phase, and the spatial reuse information comprises time information of at least one of the spatial reuse phase and the non-spatial reuse phase;

wherein in response to the selection of the spatial reuse mechanism, the processor suspends a wireless signal transmission with the plurality of predetermined devices during the spatial reuse phase;

wherein the spatial reuse phase comprises a plurality of spatial reuse time slots, and the spatial reuse information further comprises time information of the plurality of spatial reuse time slots.

2 . The communication device of claim 1 , wherein the processor allocates at least one of the plurality of spatial reuse time slots to each of the plurality of predetermined devices according to a characteristic of the plurality of wireless communication connections.

3 . The communication device of claim 2 , wherein the characteristic of the plurality of wireless communication connections comprises an energy or a direction of a wireless signal received by a corresponding predetermined device in the plurality of predetermined devices.

4 . The communication device of claim 2 , wherein the processor allocates different spatial reuse time slots to at least one adjacent predetermined device in the plurality of determined devices.

5 . The communication device of claim 2 , wherein the processor allocates a same spatial reuse time slot to at least one predetermined device that is sufficiently far apart in the plurality of determined devices.

6 . A communication device, comprising:

a wireless transceiver, arranged to transmit or receive a plurality of wireless signals, wherein the plurality of wireless signals comprises a signal received from a wireless access point, and the signal comprises a packet carrying spatial reuse information; and

a processor, arranged to determine when to communicate with the wireless access point according to the spatial reuse information;

wherein the spatial reuse information defines a pattern of a communication period, the communication period comprises a spatial reuse phase and a non-spatial reuse phase, and the spatial reuse information comprises time information of at least one of the spatial reuse phase and the non-spatial reuse phase;

wherein the processor communicates with the wireless access point during the non-spatial reuse phase, and communicates with a predetermined device during the spatial reuse phase;

wherein the spatial reuse phase comprises a plurality of spatial reuse time slots, and the spatial reuse information further comprises time information of the plurality of spatial reuse time slots.

7 . The communication device of claim 6 , wherein the processor determines in which of the plurality of spatial reuse time slots to communicate with the predetermined device according to the spatial reuse information.

8 . The communication of claim 6 , wherein the processor performs a peer-to-peer communication with the predetermined device according to a Wi-Fi direct protocol.

9 . The communication of claim 6 , wherein the spatial reuse phase does not overlap the non-spatial reuse phase.

10 . A transmission schedule method for a communication device, comprising:

selecting a spatial reuse mechanism and generating spatial reuse information according to the spatial reuse mechanism;

transmitting at least one packet carrying the spatial reuse information, wherein the at least one packet is transmitted from the communication device to a plurality of predetermined devices within an infrastructure basic service set, the communication device is a wireless access point within the infrastructure basic service set, the communication device respectively establishes a plurality of wireless communication connections with the plurality of predetermined devices, the spatial reuse information defines a pattern of a communication period, the communication period comprises a spatial reuse phase and a non-spatial reuse phase, and the spatial reuse information comprises time information of at least one of the spatial reuse phase and the non-spatial reuse phase;

performing a wireless signal transmission associated with the infrastructure basic service set during the non-spatial reuse phase; and

suspending the wireless signal transmission associated with the infrastructure basic service set during the spatial reuse phase;

wherein the spatial reuse phase comprises a plurality of spatial reuse time slots, and the spatial reuse information further comprises time information of the plurality of spatial reuse time slots.

11 . The transmission schedule method of claim 10 , further comprising:

allocating at least one of the plurality of spatial reuse time slots to the plurality of predetermined devices according to a characteristic of the plurality of wireless communication connections.

12 . The transmission schedule method of claim 11 , wherein the characteristic of the plurality of wireless communication connections comprises an energy or a direction of a wireless signal received by a corresponding predetermined device in the plurality of predetermined devices.

13 . The transmission schedule method of claim 11 , further comprising:

determining whether a first wireless signal transmission of a first predetermined device in the plurality of predetermined devices is interfered with by a second wireless signal transmission of a second predetermined device in the plurality of predetermined devices; and

in response to determining the first wireless signal transmission of the first predetermined device being interfered with by the second wireless signal transmission of the second predetermined device, allocating different spatial reuse time slots to the first predetermined device and the second predetermined device.

14 . The transmission schedule method of claim 13 , further comprising:

in response to determining the first wireless signal transmission of the first predetermined device not being interfered with by the second wireless signal transmission of the second predetermined device, allocating a same spatial reuse time slot to the first predetermined device and the second predetermined device.

15 . The transmission schedule method of claim 11 , further comprising:

performing a peer-to-peer communication in an allocated spatial reuse time slot according to a Wi-Fi direct protocol.