IP Library › Granted Patent US 11,751,242
Granted Patent B2
US 11,751,242 · App. 16/559,252 · Granted Sep 5, 2023

Radio-unlicensed multi-channel access for low-radio frequency-capable user equipment

Inventors: Yisheng Xue (San Diego, CA); Xiaoxia Zhang (San Diego, CA); Aleksandar Damnjanovic (Del Mar, CA); Jing Sun (San Diego, CA); Yongbin Wei (La Jolla, CA); Tamer Kadous (San Diego, CA)
Assignee: QUALCOMM Incorporated
H04W74/0808H04W16/14H04W24/08H04W72/23
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 11,751,242
App. No.
16/559,252
Granted
Sep 5, 2023
Kind
B2
Abstract

New radio (NR) unlicensed (NR-U) multi-channel access is disclosed for low-radio frequency (RF)-capable user equipment (UE). A base station may enable multi-channel access when single operator operations cannot be guaranteed within a shared communication spectrum. The primary and secondary channels are defined within the shared communication channel. The base station may then transmit a configuration message to one or more low-RF UEs that identifies the charnels and directs the UEs to monitor the primary channel for a successful listen before talk (LBT) indicator. The base station performs an LBT procedure on the primary channel and the secondary channel and signals the low-RF UEs to re-tune to the secondary channel for communication during a current transmission opportunity.

Claims (71)

1. A method of wireless communication, the method comprising:

transmitting, by a network equipment, a configuration message to one or more low-radio frequency (RF) user equipments (UEs), wherein the configuration message is associated with configuring the one or more low-RF UEs to monitor a primary channel of a shared communication spectrum for a successful listen before talk (LBT) indicator, the shared communication spectrum including the primary channel and a secondary channel defined by the network equipment;

performing, by the network equipment, an LBT procedure on the primary channel and the secondary channel; and

signaling, by the network equipment and during a transmission opportunity, the one or more low-RF UEs on the primary channel to re-tune from the primary channel to the secondary channel for communication during the transmission opportunity based on success of the LBT procedure on both the primary and secondary channels.

2. The method of claim 1 , wherein the network equipment comprises a base station and further including:

transmitting, by network equipment during the transmission opportunity, a reservation signal on the secondary channel during a re-tuning period of the one or more low-RF UEs.

3. The method of claim 2 , wherein the reservation signal includes:

a clear-to-send (CTS) signal;

a request-to-send (RTS) signal; or

a channel occupancy signal.

4. The method of claim 1 , wherein the signaling includes signaling on a downlink control signal to re-tune; or

embedding a re-tuning signal into a preamble at a beginning of the transmission opportunity.

5. The method of claim 4 ,

wherein the configuration message further includes a pre-allocation location of the second channel to the one or more low-RF UEs, and

wherein the re-tuning signal signals the one or more low-RF UEs to re-tune to the second channel at the pre-allocation location.

6. The method of claim 1 , further comprising:

enabling, by the network equipment, multi-channel access based on single operator operations being unguaranteed within the shared communication spectrum; and

defining, by the network equipment, the primary channel and the secondary channels within the shared communication channel; and

prior to transmission of the configuration message, transmitting an indication of an allocation of the secondary channel as a candidate secondary channel to the one or more low-RF UEs, and

wherein at least one low-RF UE of the one or more low-RF UEs has a maximum channel bandwidth capability of 20 MHz.

7. The method of claim 1 , further comprising:

selecting a set of one or more candidate secondary channels, the set of candidate secondary channels including the secondary channel; and

wherein performing the LBT procedure on the primary channel and the secondary channel includes:

performing an extended clear channel assessment (ECCA) on the primary channel; and

performing a clear channel assessment (CCA) on each secondary channel of the set of candidate secondary channels.

8. A method of communication, comprising:

receiving, by a low-radio frequency (RF) user equipment (UE), a configuration message from a serving network equipment;

monitoring, by the low-RF UE and based on the configuration message, a primary channel for a successful listen before talk (LBT) indicator; and

receiving, by the low-RF UE during a transmission opportunity, a re-tuning signal on the primary channel, wherein the re-tuning signal instructs the low-RF UE to re-tune, during the transmission opportunity, from the primary channel to a secondary channel for communications during the transmission opportunity; wherein:

the re-tuning signal is received in response to a successful listen before talk (LBT) procedure performed on the primary channel and on the secondary channel,

the primary channel and the secondary channel are included within a shared communication spectrum, and

the re-tuning signal is received via a downlink control signal of the re-tuning signal is embedded into a preamble received at a beginning of the transmission opportunity.

9. The method of claim 8 , further including:

communicating with the serving network equipment on the secondary channel during the transmission opportunity; and

tuning, by the low-RF UE, back to the primary channel after the transmission opportunity.

10. The method of claim 8 ,

wherein the configuration message pre-allocates one or more secondary channels to the low-RF UE, and

wherein the re-tuning signal identifies the secondary channel from the pre-allocated one or more secondary channels.

11. A network equipment configured for wireless communication, the network equipment comprising:

at least one processor; and

a memory coupled to the at least one processor and storing processor-readable code that, when executed by the processor, is configured to:

transmit a configuration message to one or more low-radio frequency (RF) user equipments (UEs), wherein the configuration message configures the one or more low-RF UEs to monitor the primary channel for a successful listen before talk (LBT) indicator;

perform an LBT procedure on the primary channel and a secondary channel; and

signal the one or more low-RF UEs on the primary channel to re-tune to the secondary channel for communication during a transmission opportunity based on success of the LBT procedures on both the primary and secondary channels.

12. The network equipment of claim 11 , wherein the processor-readable code that, when executed by the at least one processor, is further configured to initiate transmission of a reservation signal on the secondary channel during a re-tuning period of the one or more low-RF UEs.

13. The network equipment of claim 12 , wherein the reservation signal includes:

a clear-to-send (CTS) signal;

a request-to-send (RTS) signal; or

a channel occupancy signal.

14. The network equipment of claim 11 , wherein, to signal the one or more low-RF UEs on the primary channel to re-tune to the secondary channel, the processor-readable code that, when executed by the at least one processor, is further configured to:

signal on a downlink control signal to re-tune; or

embed a re-tuning signal into a preamble at a beginning of the transmission opportunity.

15. The network equipment of claim 14 ,

wherein the configuration message further includes a pre-allocation location of the secondary channel to the one or more low-RF UEs, and

wherein the re-tuning signal signals the one or more low-RF UEs to re-tune to the secondary channel at the pre-allocation location.

16. A low-radio frequency (RF) user equipment (UE) configured for wireless communication, the low-RF UE comprising:

at least one processor; and

a memory coupled to the at least one processor and storing processor-readable code that, when executed by the processor, is further configured to:

receive a configuration message from a serving network equipment;

monitor a primary channel for a successful listen before talk (LBT) indicator based on the configuration message; and

receive, during a transmission opportunity, a re-tuning signal on the primary channel, wherein the re-tuning signal instructs the low-RF UE to re-tune, during the transmission opportunity from the primary channel to a secondary channel for communications during the transmission opportunity;

wherein the re-tuning signal is received in response to a successful listen before talk (LBT) procedure performed on the primary channel and on the secondary channel,

the primary channel and the secondary channel are included within a shared communication spectrum, and

the re-tuning signal is received via a downlink control signal or the re-tuning signal is embedded into a preamble received at a beginning of the transmission opportunity.

17. The low-RF UE of claim 16 , wherein the processor-readable code that, when executed by the at least one processor, is further configured to tune back to the primary channel after the transmission opportunity.

18. The low-RF UE of claim 16 , wherein the re-tuning signal is received via:

a downlink control signal; or

embedded into a preamble received at a beginning of the transmission opportunity.

19. The low-RF UE of claim 18 ,

wherein the configuration message pre-allocates one or more secondary channels to the low-RF UE, and

wherein the re-tuning signal identifies the secondary channel from the pre-allocated one or more secondary channels.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 23, 2019
From: XUE, YISHENG; ZHANG, XIAOXIA; DAMNJANOVIC, ALEKSANDAR; SUN, JING; WEI, YONGBIN; KADOUS, TAMER
To: QUALCOMM INCORPORATED
Reel/Frame 051357/0783 →
Continuity (2)
Provisional Application 62737552 · Sep 27, 2018
Related Publication 20200107364A1 · Apr 2, 2020