Method for wireless communication, terminal, and non-transitory computer-readable storage medium
Abstract
A method for wireless communication includes that: a terminal reports at a first protocol layer a first event to a second protocol layer; the first event indicates that quality of a signal in a first signal set is bad enough to satisfy a first condition; determines at the second protocol layer occurrence of a second event when a number of times that the first event has successively occurred exceeds a threshold; and sends a first message to a network device, the first message indicates a signal in the second signal set, of which signal quality is good enough to satisfy a third condition; occurrence of the first event includes occurrence of beam failure instance, the occurrence of the second event includes occurrence of beam failure, and the second event indicates that link quality corresponding to the signal in the first signal set is bad enough to satisfy a second condition.
Claims
exact text as granted — not AI-modified1 . A method for wireless communication, comprising:
reporting, by a terminal, at a first protocol layer, a first event to a second protocol layer, wherein the first event is used to indicate that quality of a signal in a first signal set is bad enough to satisfy a first condition; determining, by the terminal, at the second protocol layer, occurrence of a second event when a number of times that the first event has successively occurred exceeds a threshold; and sending, by the terminal, a first message to a network device, wherein the first message is used to indicate a signal in the second signal set, of which signal quality is good enough to satisfy a third condition.
2 . The method of claim 1 , further comprising:
after determining, by the terminal, at the second protocol layer, the occurrence of the second event, starting, by the terminal, a timer; wherein the timer is used for the terminal to execute a link reconfiguration procedure during a duration of the timer.
3 . The method of claim 1 , wherein the quality of the signal in the first signal set is bad enough to satisfy the first condition comprises:
the quality of the signal in the first signal set is worse than a threshold.
4 . The method of claim 1 , further comprising:
sending, by the terminal, second indication information to the first protocol layer from the second protocol layer,
wherein the second indication information is used to indicate at least one of the following:
reporting the signal in the second signal set, of which the signal quality is good enough to satisfy the third condition; or,
reporting a measurement result about signals in the second signal set.
5 . The method of claim 3 , further comprising:
responsive to the second indication information, performing, by the terminal, the at least one of the following at the first protocol layer: reporting the signal in the second signal set, of which the signal quality is good enough to satisfy the third condition; or, reporting the measurement result about the signals in the second signal set.
6 . The method of claim 1 , wherein each signal in the first signal set corresponds to a respective one of one or more transmission beams; and each signal in the second signal set corresponds to a respective one of one or more transmission beams.
7 . The method of claim 1 , wherein each signal in the first signal set is quasi-colocated with at least one control resource set with respect to a space receiving parameter.
8 . The method of claim 1 , wherein the first protocol layer is a physical layer, and the second protocol layer is a Media Access Control (MAC) layer.
9 . The method of claim 1 , wherein occurrence of the first event comprises occurrence of beam failure instance, the occurrence of the second event comprises occurrence of beam failure, and the second event is used to indicate that link quality corresponding to the signal in the first signal set is bad enough to satisfy a second condition.
10 . A terminal, comprising:
a processor; and a memory storing instructions executable by the processor, wherein the processor is configured to: report, through a transceiver, at a first protocol layer, a first event to a second protocol layer, wherein the first event is used to indicate that quality of a signal in a first signal set is bad enough to satisfy a first condition; determine, at the second protocol layer, occurrence of a second event when a number of times that the first event has successively occurred exceeds a threshold; and send, through the transceiver, a first message to a network device, wherein the first message is used to indicate a signal in the second signal set, of which signal quality is good enough to satisfy a third condition.
11 . The terminal of claim 10 , wherein the processor is further configured to:
start a timer after determining the occurrence of the second event at the second protocol layer; wherein the timer is used for the terminal to execute a link reconfiguration procedure during a duration of the timer.
12 . The terminal of claim 10 , wherein the quality of the signal in the first signal set is bad enough to satisfy the first condition comprises:
the quality of the signal in the first signal set is worse than a threshold.
13 . The terminal of claim 10 , wherein the processor is further configured to:
send, through the transceiver, at the second protocol layer, second indication information to the first protocol layer, wherein the second indication information is used to indicate at least one of the following: reporting the signal in the second signal set, of which the signal quality is good enough to satisfy the third condition; or, reporting a measurement result about signals in the second signal set.
14 . The terminal of claim 13 , wherein the processor is further configured to:
responsive to the second indication information, perform the at least one of the following at the first protocol layer: reporting the signal in the second signal set, of which the signal quality is good enough to satisfy the third condition; or reporting the measurement result about the signals in the second signal set.
15 . The terminal of claim 10 , wherein each signal in the first signal set corresponds to a respective one of one or more transmission beams; and each signal in the second signal set corresponds to a respective one of one or more transmission beams.
16 . The terminal of claim 10 , wherein each signal in the first signal set is quasi-colocated with at least one control resource set with respect to a space receiving parameter.
17 . The terminal of claim 10 , wherein the first protocol layer is a physical layer, and the second protocol layer is a Media Access Control (MAC) layer.
18 . The terminal of claim 10 , wherein occurrence of the first event comprises occurrence of beam failure instance, the occurrence of the second event comprises occurrence of beam failure, and the second event is used to indicate that link quality corresponding to the signal in the first signal set is bad enough to satisfy a second condition.
19 . A non-transitory computer-readable storage medium having stored therein instructions that, when executed by a processor, cause the processor to:
report, through a transceiver, at a first protocol layer, a first event to a second protocol layer, wherein the first event is used to indicate that quality of a signal in a first signal set is bad enough to satisfy a first condition; determine at the second protocol layer, occurrence of a second event when a number of times that the first event has successively occurred exceeds a threshold; and send, through the transceiver, a first message to a network device, wherein the first message is used to indicate a signal in the second signal set, of which signal quality is good enough to satisfy a third condition.
20 . The non-transitory computer-readable storage medium of claim 19 , wherein occurrence of the first event comprises occurrence of beam failure instance, the occurrence of the second event comprises occurrence of beam failure, and the second event is used to indicate that link quality corresponding to the signal in the first signal set is bad enough to satisfy a second condition.Join the waitlist — get patent alerts
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