IP Library Granted Patent US 12666424
Granted Patent B2
US 12666424 · App. 18/111,597 · Granted Jun 23, 2026

Method and device for dual discontinuous reception timer operation in wireless communications

Inventors: Yu Chen (Shanghai, CN); Xiaobo Zhang (Shanghai, CN)
Assignee: APOGEE 5G GLOBAL, LLC
H04W72/20H04L1/1812H04W76/28
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Quick Facts
Patent No.
US 12666424
App. No.
18/111,597
Granted
Jun 23, 2026
Kind
B2
Abstract

Provided are techniques for dual discontinuous reception timer operation. A user equipment receives first downlink control information (DCI) having a scrambling code that is generated based on a second Radio Network Temporary Identifier (RNTI). The first DCI indicates a new transmission, a first HARQ process number of a first signal and a first time-frequency resource. The UE receives the first signal on the first time-frequency resource, where the first signal is generated based on a first bit block and the second RNTI is used to generate a scrambling code of the first signal.

Claims (65)

1 . A user equipment (UE), comprising:

a receiver configured to:

receive first downlink control information (DCI) having a scrambling code that is generated based on a second Radio Network Temporary Identifier (RNTI), wherein the first DCI indicates a first time-frequency resource, a new transmission and a first hybrid automatic repeat request (HARQ) process number of a first signal,

receive the first signal in the first time-frequency resource, wherein the first signal is based on a first bit block and a scrambling code of the first signal is based on the second RNTI,

receive a second DCI having a scrambling code that is generated based on a first RNTI, wherein the second DCI indicates a second time-frequency resource, a retransmission and a second HARQ process number of a second signal, and

receive the second signal in the second time-frequency resource, wherein the second signal is based on the first bit block and a scrambling code of the second signal is based on the first RNTI; and

a transmitter configured to transmit a second feedback signal,

wherein the UE is configured to:

on a condition that the second feedback signal is transmitted and the first and second RNTIs are both first-type RNTIs, start a first timer for a Discontinuous Reception (DRX) in a serving cell of the UE, and

on a condition that the second feedback signal is transmitted and the first RNTI is a first-type RNTI and the second RNTI is a second-type RNTI, start a second timer for the DRX and non-unicast transmission.

2 . The UE according to claim 1 , wherein:

the receiver is configured to:

receive a third signaling, the second RNTI being used to generate a scrambling code of the third signaling, the third signaling being used to indicate a third time-frequency resource; and

receive a third signal on the third time-frequency resource; the first bit block being used to generate the third signal; the third signaling being used to indicate a retransmission; the third signaling indicating that a HARQ process number of the third signal is the first HARQ process number; the third signaling is received after the first DCI,

the UE is configured to start a third timer, at least one of time-frequency resources occupied by the first DCI or time-frequency resources occupied by the first signal being used to determine a start of the third timer, and

during a running period of the third timer and on a condition that the third signal is not correctly decoded, the UE is configured to monitor a PDCCH (Physical Downlink Control Channel); wherein the third timer is used for a DRX; the second RNTI is the second-type RNTI.

3 . The UE according to claim 1 , wherein:

the UE is configured to, on a condition that the first timer or the second timer expires, restart, maintain, or modify an expiration value of a third timer is used for the DRX, and

the receiver is configured to monitor a PDCCH when the third timer is running.

4 . The UE according to claim 1 , wherein:

the UE is configured to, on a condition that the second feedback signal is transmitted, start a sixth timer for a HARQ process identified by the first HARQ process number, wherein the sixth timer is different from the first and second timers.

5 . The UE according to claim 4 , wherein the second RNTI is the second-type RNTI.

6 . The UE according to claim 5 , wherein the UE is configured to:

in response to an expiration of the first timer or the second timer, start a third timer for the DRX,

in response to an expiration of the sixth timer, start a seventh timer for the DRX,

during a running period of the third timer, monitor a PDCCH based on the second RNTI, and

during a running period of the seventh timer, monitor the PDCCH based on the first RNTI.

7 . The UE according to claim 5 , wherein the sixth timer is a drx-HARQ-RTT-TimerDL.

8 . The UE according to claim 6 , wherein the sixth timer is a drx-HARQ-RTT-TimerDL; the third timer is related to receiving a retransmission, and a name of the third timer comprises PTM (Point to Multipoint) and retransmission; the seventh timer is a drx-RetransmissionTimerDL.

9 . The UE according to claim 7 , wherein:

the receiver is configured to receive a first MAC CE (Medium Access Control Control Element) for the second RNTI of the second-type RNTI,

the UE is configured to, in a response to receiving the first MAC CE, stop a fifth timer for the second RNTI,

the receiver is configured to, in a running period of the fifth timer, monitor a PDCCH, and

a system frame number and a first time length are used together to determine a start of the fifth timer; the fifth timer is used for a DRX.

10 . The UE according to claim 8 , wherein:

the receiver is configured to receive a first MAC CE for the second RNTI of the second-type RNTI,

the UE is configured to, in response to receiving the first MAC CE, stop a fifth timer for the second RNTI,

the receiver is configured to, in a running period of the fifth timer, monitor a PDCCH, and

a system frame number and a first time length are used together to determine a start of the fifth timer; the fifth timer is used for a DRX.

11 . The UE according to claim 1 , wherein the first timer is triggered to run once after each time a HARQ feedback is transmitted, the first timer is a drx-HARQ-RTT-TimerDL, the second timer is configured by DRX-ConfigPTM, and names of the second timer comprise drx and PTM; each HARQ process scheduled by each G-RNTI scrambled PDCCH is respectively associated with an instance of the second timer.

12 . The UE according to claim 9 , wherein the first timer is triggered to run once after each time a HARQ feedback is transmitted, the first timer is a drx-HARQ-RTT-TimerDL, the second timer is a drx-HARQ-RTT-TimerDL-PTM.

13 . The UE according to claim 10 , wherein the first timer is triggered to run once after each time a HARQ feedback is transmitted, the first timer is a drx-HARQ-RTT-TimerDL, the second timer is a drx-HARQ-RTT-TimerDL-PTM.

14 . The UE according to claim 10 , wherein in a running period of the third timer, a PDCCH is monitored; the PDCCH is used to transmit the second DCI.

15 . The UE according to claim 12 , wherein in a running period of the third timer, a PDCCH is monitored; the PDCCH is used to transmit the second DCI.

16 . The UE according to claim 4 , wherein the first timer is triggered to run once after each time a HARQ feedback is transmitted, the first timer is a drx-HARQ-RTT-TimerDL, the second timer is a drx-HARQ-RTT-TimerDL-PTM.

17 . The UE according to claim 7 , wherein the first timer is triggered to run once after each time a HARQ feedback is transmitted, the first timer is a drx-HARQ-RTT-TimerDL, the second timer is a drx-HARQ-RTT-TimerDL-PTM.

18 . The UE according to claim 7 , wherein the first timer is triggered to run once after each time that a HARQ feedback is transmitted, the first timer is a drx-HARQ-RTT-TimerDL, the second timer is configured by DRX-ConfigPTM, and names of the second timer comprise drx and PTM; each HARQ process scheduled by each G-RNTI scrambled PDCCH is respectively associated with an instance of the second timer.

19 . A base station, comprising:

a transmitter configured to:

transmit first downlink control information (DCI) having a scrambling code that is generated based on a second Radio Network Temporary Identifier (RNTI), wherein the first DCI indicates a first time-frequency resource, a new transmission and a first hybrid automatic repeat request (HARQ) process number of a first signal,

transmit the first signal in the first time-frequency resource, wherein the first signal is based on a first bit block and a scrambling code of the first signal is based on the second RNTI,

transmit a second DCI having a scrambling code that is generated based on a first RNTI, wherein the second DCI indicates a second time-frequency resource, a retransmission and a second HARQ process number of a second signal, and

transmit the second signal in the second time-frequency resource, wherein the second signal is based on the first bit block and a scrambling code of the second signal is based on the first RNTI; and

a receiver configured to receive a second feedback signal,

wherein:

on a condition that the second feedback signal is transmitted and the first and second RNTIs are both first-type RNTIs, a first timer for a Discontinuous Reception (DRX) in a serving cell is started, and

on a condition that the second feedback signal is transmitted and the first RNTI is a first-type RNTI and the second RNTI is a second-type RNTI, a second timer for the DRX and non-unicast transmission is started.

20 . A method, comprising:

receiving first downlink control information (DCI) having a scrambling code that is generated based on a second Radio Network Temporary Identifier (RNTI), wherein the first DCI indicates a first time-frequency resource, a new transmission and a first hybrid automatic repeat request (HARQ) process number of a first signal;

receiving the first signal in the first time-frequency resource, wherein the first signal is based on a first bit block and a scrambling code of the first signal is based on the second RNTI;

receiving a second DCI having a scrambling code that is generated based on a first RNTI, wherein the second DCI indicates a second time-frequency resource, a retransmission and a second HARQ process number of a second signal;

receiving the second signal in the second time-frequency resource, wherein the second signal is based on the first bit block and a scrambling code of the second signal is based on the first RNTI;

transmitting a second feedback signal;

in response to transmitting the second feedback signal and the first and second RNTIs being both first-type RNTIs, starting a first timer for a Discontinuous Reception (DRX) in a serving cell of the UE; and

in response to transmitting the second feedback signal and the first RNTI being a first-type RNTI and the second RNTI being a second-type RNTI, starting a second timer for the DRX and non-unicast transmission.