Multi-carrier communication control method and apparatus, and communication device
A multi-carrier communication control method and apparatus, and a communication device. The method includes: obtaining, by a network-side device, a capability of a maximum uplink sending time duty cycle that is supported by the terminal in each carrier frequency band and a capability of a maximum uplink sending time duty cycle that is supported by the terminal in a carrier frequency band combination corresponding to multiple carrier frequency bands; and adjusting, by the network-side device, an actual uplink sending time of the terminal in each carrier frequency band to obtain an actual uplink sending time duty cycle of the terminal in each carrier frequency band.
1 . A multi-carrier communication control method, comprising:
obtaining, by a network-side device, a capability of a maximum uplink sending time duty cycle that is supported by a terminal in each carrier frequency band and a capability of a maximum uplink sending time duty cycle that is supported by the terminal in a carrier frequency band combination corresponding to multiple carrier frequency bands, wherein the multi-carrier aggregation or a supplementary uplink is supported by the terminal; and
adjusting, by the network-side device, an actual uplink sending time of the terminal in each carrier frequency band to obtain an actual uplink sending time duty cycle of the terminal in each carrier frequency band, so that the actual uplink sending time duty cycle of the terminal in each carrier frequency band, the capability of the maximum uplink sending time duty cycle that is supported by the terminal in each carrier frequency band, and the capability of the maximum
uplink sending time duty cycle that is supported by the terminal in the carrier frequency band combination corresponding to the multiple carrier frequency bands satisfy a preset relationship, and wherein the preset relationship is:
1
n
×
(
duty
x
1
d
u
t
y
c
y
c
l
e
x
1
+
duty
x
2
d
u
t
y
c
y
c
l
e
x
2
+
…
+
duty
xn
d
u
t
y
c
y
c
l
e
x
n
)
≤
CA_dutycycle
,
wherein n is the number of carrier frequency bands, xn is an n th carrier frequency band, duty xn is an actual uplink sending time duty cycle of the terminal in the n th carrier frequency band, dutycycle xn is a capability of a maximum uplink sending time duty cycle that is supported by the terminal in the n th carrier frequency band, and CA_dutycycle is the capability of the maximum uplink sending time duty cycle that is supported by the terminal in the carrier frequency band combination corresponding to the multiple carrier frequency bands.
2 . The method according to claim 1 , wherein in a case that maximum transmit power supported by a target carrier frequency band is higher than preset power, a capability of a maximum uplink sending time duty cycle that is supported by the terminal in the target carrier frequency band is a first preset value; or
in a case that maximum transmit power supported by a target carrier frequency band is lower than or equal to preset power, a capability of a maximum uplink sending time duty cycle that is supported by the terminal in the target carrier frequency band is a second preset value, wherein
the target carrier frequency band is any one of carrier frequency bands corresponding to the multi-carrier aggregation.
3 . The method according to claim 1 , wherein in a case that the terminal does not report the capability of the maximum uplink sending time duty cycle that is supported by the terminal in the carrier frequency band combination corresponding to the multiple carrier frequency bands, the capability of the maximum uplink sending time duty cycle that is supported by the terminal in the carrier frequency band combination corresponding to the multiple carrier frequency bands is a first default value; or
in a case that maximum transmit power supported in the carrier frequency band is lower than or equal to preset power, the capability of the maximum uplink sending time duty cycle that is supported by the terminal in the carrier frequency band combination corresponding to the multiple carrier frequency bands is a second default value.
4 . The method according to claim 1 , wherein the terminal is a terminal whose transmit power is higher than preset power.
5 . A multi-carrier communication control method, comprising:
reporting, by a terminal to a network-side device, a capability of a maximum uplink sending time duty cycle that is supported by the terminal in each carrier frequency band and a capability of a maximum uplink sending time duty cycle that is supported by the terminal in a carrier frequency band combination corresponding to multiple carrier frequency bands, wherein the multi-carrier aggregation or a supplementary uplink is supported by the terminal, and wherein
an actual uplink sending time duty cycle of the terminal in each carrier frequency band, the capability of the maximum uplink sending time duty cycle that is supported by the terminal in each carrier frequency band, and the capability of the maximum uplink sending time duty
cycle that is supported by the terminal in the carrier frequency band combination corresponding to the multiple carrier frequency bands satisfy a preset and wherein the preset relationship is:
1
n
×
(
duty
x
1
d
u
t
y
c
y
c
l
e
x
1
+
duty
x
2
d
u
t
y
c
y
c
l
e
x
2
+
…
+
duty
xn
d
u
t
y
c
y
c
l
e
x
n
)
≤
CA_dutycycle
,
wherein n is the number of carrier frequency bands, xn is an n th carrier frequency band, duty xn is an actual uplink sending time duty cycle of the terminal in the n th carrier frequency band, dutycycle xn is a capability of a maximum uplink sending time duty cycle that is supported by the terminal in the n th carrier frequency band, and CA_dutycycle is the capability of the maximum uplink sending time duty cycle that is supported by the terminal in the carrier frequency band combination corresponding to the multiple carrier frequency bands.
6 . The method according to claim 5 , wherein the method further comprises:
in a case that the actual uplink sending time duty cycle of the terminal in each carrier frequency band, the capability of the maximum uplink sending time duty cycle that is supported by the terminal in each carrier frequency band, and the capability of the maximum uplink sending time duty cycle that is supported by the terminal in the carrier frequency band combination corresponding to the multiple carrier frequency bands do not satisfy the preset relationship, reducing, by the terminal, transmit power in the carrier frequency band.
7 . The method according to claim 5 , wherein in a case that maximum transmit power supported by a target carrier frequency band is higher than preset power, a capability of a maximum uplink sending time duty cycle that is supported by the terminal in the target carrier frequency band is a first preset value; or
in a case that maximum transmit power supported by a target carrier frequency band is lower than or equal to preset power, a capability of a maximum uplink sending time duty cycle that is supported by the terminal in the target carrier frequency band is a second preset value, wherein
the target carrier frequency band is any one of carrier frequency bands corresponding to the multi-carrier aggregation.
8 . The method according to claim 5 , wherein in a case that the terminal does not report the capability of the maximum uplink sending time duty cycle that is supported by the terminal in the carrier frequency band combination corresponding to the multiple carrier frequency bands, the capability of the maximum uplink sending time duty cycle that is supported by the terminal in the carrier frequency band combination corresponding to the multiple carrier frequency bands is a first default value; or
in a case that maximum transmit power supported in the carrier frequency band is lower than or equal to preset power, the terminal does not report the capability of the maximum uplink sending time duty cycle that is supported by the terminal in the carrier frequency band combination corresponding to the multiple carrier frequency bands, and the capability of the maximum uplink sending time duty cycle that is supported by the terminal in the carrier frequency band combination corresponding to the multiple carrier frequency bands is a second default value.
9 . The method according to claim 5 , wherein the terminal is a terminal whose transmit power is higher than preset power.
10 . A network-side device, comprising a processor, a memory, and a program or instructions stored in the memory and capable of running on the processor, wherein the program or the instructions, when executed by the processor, causes the processor to perform:
obtaining a capability of a maximum uplink sending time duty cycle that is supported by the terminal in each carrier frequency band and a capability of a maximum uplink sending time duty cycle that is supported by the terminal in a carrier frequency band combination corresponding to multiple carrier frequency bands, wherein the multi-carrier aggregation or a supplementary uplink is supported by the terminal; and
adjusting an actual uplink sending time of the terminal in each carrier frequency band to obtain an actual uplink sending time duty cycle of the terminal in each carrier frequency band, so that the actual uplink sending time duty cycle of the terminal in each carrier frequency band, the capability of the maximum uplink sending time duty cycle that is supported by the terminal in each carrier frequency band, and the capability of the maximum uplink sending time duty cycle
that is supported by the terminal in the carrier frequency band combination corresponding to the multiple carrier frequency bands satisfy a preset relationship, and wherein the preset relationship is:
1
n
×
(
duty
x
1
d
u
t
y
c
y
c
l
e
x
1
+
duty
x
2
d
u
t
y
c
y
c
l
e
x
2
+
…
+
duty
xn
d
u
t
y
c
y
c
l
e
x
n
)
≤
CA_dutycycle
,
wherein n is the number of carrier frequency bands, xn is an n th carrier frequency band, duty xn is an actual uplink sending time duty cycle of the terminal in the n th carrier frequency band, dutycycle xn is a capability of a maximum uplink sending time duty cycle that is supported by the terminal in the n th carrier frequency band, and CA_dutycycle is the capability of the maximum uplink sending time duty cycle that is supported by the terminal in the carrier frequency band combination corresponding to the multiple carrier frequency bands.
11 . The network-side device according to claim 10 , wherein in a case that maximum transmit power supported by a target carrier frequency band is higher than preset power, a capability of a maximum uplink sending time duty cycle that is supported by the terminal in the target carrier frequency band is a first preset value; or
in a case that maximum transmit power supported by a target carrier frequency band is lower than or equal to preset power, a capability of a maximum uplink sending time duty cycle that is supported by the terminal in the target carrier frequency band is a second preset value, wherein
the target carrier frequency band is any one of carrier frequency bands corresponding to the multi-carrier aggregation.
12 . The network-side device according to claim 10 , wherein in a case that the terminal does not report the capability of the maximum uplink sending time duty cycle that is supported by the terminal in the carrier frequency band combination corresponding to the multiple carrier frequency bands, the capability of the maximum uplink sending time duty cycle that is supported by the terminal in the carrier frequency band combination corresponding to the multiple carrier frequency bands is a first default value; or
in a case that maximum transmit power supported in the carrier frequency band is lower than or equal to preset power, the capability of the maximum uplink sending time duty cycle that is supported by the terminal in the carrier frequency band combination corresponding to the multiple carrier frequency bands is a second default value.
13 . The network-side device according to claim 10 , wherein the terminal is a terminal whose transmit power is higher than preset power.