Signal state display method, terminal and readable storage medium
Disclosed are a signal state display method, a terminal device, and a readable storage medium. The signal state display method may include: monitoring a signal change value of the UE in a current cell of the first-standard network, in response to the UE being in an idle mode; triggering an access request to cause the UE to establish a connection with the first-standard network, in response to the signal change value being greater than a preset signal threshold; updating a current signal state to a signal state corresponding to the second-standard network, in response to accessing the second-standard network through the anchor frequency of the first-standard network; and continuously displaying the updated signal state until a next signal state update.
1 . A signal state display method, applied to a user equipment (UE), wherein the UE is in dual connection with a first-standard network and a second-standard network, and the first-standard network provides the UE with an anchor frequency for accessing the second-standard network, the signal state display method comprising:
monitoring a signal change value of the UE in a current cell of the first-standard network, in response to the UE being in an idle mode;
triggering an access request to cause the UE to establish a connection with the first-standard network, in response to the signal change value being greater than a preset signal threshold;
updating a current signal state to a signal state corresponding to the second-standard network, in response to accessing the second-standard network through the anchor frequency of the first-standard network; and
continuously displaying the updated signal state until a next signal state update.
2 . The signal state display method of claim 1 , further comprising:
updating a current signal state to a signal state corresponding to the first-standard network, in response to a failure of accessing the second-standard network through the anchor frequency of the first-standard network.
3 . The signal state display method of claim 1 , wherein monitoring a signal change value of the UE in a current cell of the first-standard network comprises:
acquiring, successively according to a preset monitoring time interval, a first signal strength and a second signal strength of the UE in the current cell of the first-standard network; and
determining the signal change value according to the first signal strength and the second signal strength.
4 . The signal state display method of claim 3 , wherein after acquiring the first signal strength and the second signal strength, the method further comprises:
determining a first cell identifier corresponding to the first signal strength and a second cell identifier corresponding to the second signal strength; and
sending a random access request to a cell corresponding to the second cell identifier, in response to the first cell identifier being different from the second cell identifier.
5 . The signal state display method of claim 1 , wherein triggering an access request to cause the UE to establish a connection with the first-standard network comprises:
sending an access request to the current cell, wherein the access request is a data service request or a random access request; and
triggering establishment of a Radio Resource Control (RRC) connection with the first-standard network.
6 . The signal state display method of claim 1 , wherein before accessing the second-standard network through the anchor frequency of the first-standard network, the method further comprises:
receiving a system message sent by the first-standard network;
in response to the system message containing a Non-Standalone (NSA) capability indication field, determining according to the NSA capability indication field whether the first-standard network provides the anchor frequency; and
in response to the system message not containing the NSA capability indication field, determining whether the first-standard network provides the anchor frequency depending on whether a measurement event or a reconfiguration message delivered by the first-standard network is received.
7 . A signal state display method, applied to a user equipment (UE), wherein the UE is in dual connection with a first-standard network and a second-standard network, and the first-standard network provides the UE with an anchor frequency for accessing the second-standard network, the signal state display method comprising:
receiving a paging message sent periodically, in response to the UE being in an idle mode;
triggering an access request to cause the UE to establish a connection with the first-standard network, in response to receiving the paging message;
updating a current signal state to a signal state corresponding to the second-standard network, in response to accessing the second-standard network through the anchor frequency of the first-standard network; and
continuously displaying the updated signal state until a next signal state update.
8 . The signal state display method of claim 7 , further comprising:
updating a current signal state to a signal state corresponding to the first-standard network, in response to a failure of accessing the second-standard network through the anchor frequency of the first-standard network.
9 . The signal state display method of claim 7 , wherein after receiving the paging message, the method further comprises:
determining a third cell identifier of a cell where the UE is located before the paging message is received and a fourth cell identifier of a cell where the UE is located after the paging message is received; and
sending a random access request to the cell corresponding to the fourth cell identifier, in response to the third cell identifier being different from the fourth cell identifier.
10 . The signal state display method of claim 7 , wherein triggering an access request to cause the UE to establish a connection with the first-standard network comprises:
sending an access request to the current cell, wherein the access request is a data service request or a random access request; and
triggering establishment of a Radio Resource Control (RRC) connection with the first-standard network.
11 . The signal state display method of claim 7 , wherein before accessing the second-standard network through the anchor frequency of the first-standard network, the method further comprises:
receiving a system message sent by the first-standard network;
in response to the system message containing a Non-Standalone (NSA) capability indication field, determining according to the NSA capability indication field whether the first-standard network provides the anchor frequency; and
in response to the system message not containing the NSA capability indication field, determining whether the first-standard network provides the anchor frequency depending on whether a measurement event or a reconfiguration message delivered by the first-standard network is received.
12 . A terminal device, comprising at least one processor and a memory communicably connected to the at least one processor, wherein the memory stores instructions executable by the at least one processor which, when executed by the at least one processor, causes the at least one processor to carry out a signal state display method, applied to a user equipment (UE), wherein the UE is in dual connection with a first-standard network and a second-standard network, and the first-standard network provides the UE with an anchor frequency for accessing the second-standard network, the signal state display method comprising:
monitoring a signal change value of the UE in a current cell of the first-standard network, in response to the UE being in an idle mode;
triggering an access request to cause the UE to establish a connection with the first-standard network, in response to the signal change value being greater than a preset signal threshold;
updating a current signal state to a signal state corresponding to the second-standard network, in response to accessing the second-standard network through the anchor frequency of the first-standard network; and
continuously displaying the updated signal state until a next signal state update.
13 . A non-transitory computer-readable storage medium, storing computer-executable instructions which, when executed by a computer, causes the computer to carry out the signal state display method of claim 1 .
14 . A non-transitory computer-readable storage medium, storing computer-executable instructions which, when executed by a computer, causes the computer to carry out the signal state display method of claim 2 .
15 . A non-transitory computer-readable storage medium, storing computer-executable instructions which, when executed by a computer, causes the computer to carry out the signal state display method of claim 3 .
16 . A non-transitory computer-readable storage medium, storing computer-executable instructions which, when executed by a computer, causes the computer to carry out the signal state display method of claim 4 .
17 . A terminal device, comprising at least one processor and a memory communicably connected to the at least one processor, wherein the memory stores instructions executable by the at least one processor which, when executed by the at least one processor, causes the at least one processor to carry out the signal state display method of claim 7 .
18 . A non-transitory computer-readable storage medium, storing computer-executable instructions which, when executed by a computer, causes the computer to carry out the signal state display method of claim 7 .
19 . A non-transitory computer-readable storage medium, storing computer-executable instructions which, when executed by a computer, causes the computer to carry out the signal state display method of claim 8 .
20 . A non-transitory computer-readable storage medium, storing computer-executable instructions which, when executed by a computer, causes the computer to carry out the signal state display method of claim 9 .