Scheduling restriction enhancements for LTE and 5G NR dynamic spectrum sharing
Methods and devices for a base station acting as a primary cell to perform dual spectrum sharing (DSS) with a first user equipment device (UE) over a 5G NR connection and a second UE over an LTE connection. The first UE establishes the 5G NR connection with the primary cell and one or more secondary cells. One of the secondary cells is configured in the 5G NR connection to provide downlink control information to the UE for the primary cell, to avoid collisions by the primary cell with LTE control transmissions.
1 . A method, comprising:
by a user equipment (UE) device:
receive configuration information from the network, wherein the configuration information indicates whether communications on a primary cell in frequency range 1 (FR1) are configured to be scheduled by a first secondary cell in addition to the primary cell, wherein when communications on the primary cell are configured to be scheduled by the first secondary cell:
the configuration information does not configure an advanced PDCCH monitoring capability on the first secondary cell while the UE supports the advanced PDCCH monitoring capability, and
the first secondary cell is in FR1;
receiving first downlink control information (DCI) from the primary cell; and
receiving second DCI from the first secondary cell, wherein the first DCI and the second DCI comprise control information for respective communications on the primary cell.
2 . The method of claim 1 , further comprising
receiving a first indication to monitor a common search space (CSS) for the first DCI from the primary cell; and
receiving a second indication to monitor a UE-specific search space (USS) for the second DCI from the first secondary cell.
3 . The method of claim 2 , further comprising:
receiving a third indication to monitor the USS for third DCI from the first secondary cell, wherein the third DCI schedules a communication with a second secondary cell.
4 . The method of claim 2 ,
wherein the first indication and the second indication comprise one or more radio resource control (RRC) configuration messages.
5 . The method of claim 1 , further comprising:
establishing a connection with a second secondary cell of the network, wherein the second secondary cell is not configured to schedule communications for the primary cell.
6 . The method of claim 1 ,
wherein the control information for respective communications on the primary cell comprises scheduling information for communications between the primary cell and the UE device.
7 . The method of claim 1 ,
wherein the second DCI has a 5G NR non-fallback DCI format of 0_1, 0_2, 1_1 or 1_2.
8 . The method of claim 1 , further comprising:
operating the connection according to the first DCI and the second DCI by performing one or more of:
transmitting one or more uplink communications to a base station according to scheduling information of the first DCI or the second DCI;
receiving one or more downlink communications from the base station according to the scheduling information of the first DCI or the second DCI.
9 . The method of claim 1 ,
wherein the first DCI has:
a 5th Generation New Radio (5G NR) fallback DCI format of 0_0 or 1_0; or
a 5G NR special DCI format of 2_0, 2_1, 2_2, 2_3, 2_4, 2_5 or 2_6, and
wherein the second DCI has a 5G NR non-fallback DCI format of 0_1, 0_2, 1_1 or 1_2.
10 . The method of claim 1 ,
wherein the first DCI has:
a 5th Generation New Radio (5G NR) fallback DCI format of 0_0 or 1_0; and
wherein the second DCI has:
a 5G NR non-fallback DCI format of 0_1, 0_2, 1_1 or 1_2; or
a 5G NR special DCI format of 2_0, 2_1, 2_2, 2_3, 2_4, 2_5 or 2_6.
11 . The method of claim 1 ,
wherein the first DCI and the second DCI each comprise one or more of:
a scheduling indication for an uplink communication with the primary cell;
a scheduling indication for a downlink communication with the primary cell; and
a control message indicating a behavior modification of the UE device.
12 . A user equipment (UE) device, comprising:
a radio;
a processor communicatively coupled to the radio, wherein the UE device is configured to:
receive configuration information from the network, wherein the configuration information indicates whether communications on a primary cell in frequency range 1 (FR1) are configured to be scheduled by a first secondary cell in addition to the primary cell, wherein when communications on the primary cell are configured to be scheduled by the first secondary cell:
the configuration information does not configure an advanced PDCCH monitoring capability on the first secondary cell while the UE supports the advanced PDCCH monitoring capability, and
the first secondary cell is in FR1;
receive first downlink control information (DCI) from the primary cell; and
receive second DCI from the first secondary cell, wherein the first DCI and the second DCI comprise control information for respective communications on related to the connection between the primary cell and the UE device.
13 . The UE device of claim 12 , wherein the UE device is further configured to:
receive a first indication to monitor a common search space (CSS) for the first DCI from the primary cell; and
receive a second indication to monitor a UE-specific search space (USS) for the second DCI from the first secondary cell.
14 . The UE device of claim 13 , wherein the UE device is further configured to:
receive a third indication to monitor the USS for third DCI from the first secondary cell, wherein the third DCI schedules a communication with a second secondary cell.
15 . The UE device of claim 13 ,
wherein the first indication and the second indication comprise one or more radio resource control (RRC) configuration messages.
16 . The UE device of claim 12 , wherein the UE device is further configured to:
establish a connection with a second secondary cell of the network, wherein the second secondary cell is not configured to schedule communications for the primary cell.
17 . An apparatus, comprising:
a processor configured to cause a user equipment (UE) device to:
receive configuration information from the network, wherein the configuration information indicates whether communications on the primary cell in frequency range 1 (FR1) are configured to be scheduled by a first secondary cell in addition to a primary cell, wherein when communications on the primary cell are configured to be scheduled by the first secondary cell:
the configuration information does not configure an advanced PDCCH monitoring capability on the first secondary cell while the UE supports the advanced PDCCH monitoring capability, and
the first secondary cell is in FR1;
receive first downlink control information (DCI) from the primary cell; and
receive second DCI from the first secondary cell, wherein the first DCI and the second DCI comprise control information for respective communications on the primary cell.
18 . The apparatus of claim 17 , wherein the processor is further configured to cause the UE device to:
receive a first indication to monitor a common search space (CSS) for the first DCI from the primary cell; and
receive a second indication to monitor a UE-specific search space (USS) for the second DCI from the first secondary cell.
19 . The apparatus of claim 17 ,
wherein the first DCI has:
a 5th Generation New Radio (5G NR) fallback DCI format of 0_0 or 1_0; or
a 5G NR special DCI format of 2_0, 2_1, 2_2, 2_3, 2_4, 2_5 or 2_6, and
wherein the second DCI has a 5G NR non-fallback DCI format of 0_1, 0_2, 1_1 or 1_2.
20 . The apparatus of claim 17 ,
wherein the first DCI has:
a 5th Generation New Radio (5G NR) fallback DCI format of 0_0 or 1_0; and
wherein the second DCI has:
a 5G NR non-fallback DCI format of 0_1, 0_2, 1_1 or 1_2; or
a 5G NR special DCI format of 2_0, 2_1, 2_2, 2_3, 2_4, 2_5 or 2_6.