Cell timing in a wireless device and base station
Methods, apparatuses, and systems are described for wireless communications. A transmission timing difference between a first cell group and a second cell group may be determined. If the transmission timing difference exceeds a threshold, one or more devices may stop transmitting uplink signals via one or more secondary cells and/or may not apply the timing adjustment for a cell group.
1. A method comprising:
performing, by a wireless device and using a first timing advance, a first uplink transmission via one or more secondary cells associated with a first cell group;
based on a transmission timing difference between the first cell group and a second cell group exceeding a threshold, stopping uplink transmission via the one or more secondary cells; and
after the stopping uplink transmission via the one or more secondary cells, performing, using a second timing advance, a second uplink transmission via the one or more secondary cells.
2. The method of claim 1 , further comprising determining that the one or more secondary cells are out-of-sync, wherein the performing the second uplink transmission comprises performing the second uplink transmission during a time that the one or more secondary cells are out-of-sync.
3. The method of claim 1 , further comprising:
based on the transmission timing difference exceeding the threshold, determining that a time alignment timer is expired,
wherein the performing the second uplink transmission comprises performing the second uplink transmission during a time that the time alignment timer is not running.
4. The method of claim 1 , wherein the transmission timing difference comprises a difference between:
uplink transmission timing associated with the first cell group; and
uplink transmission timing associated with the second cell group.
5. The method of claim 1 , wherein the transmission timing difference comprises a difference between:
a timing of a first synchronization signal; and
a timing of a second synchronization signal.
6. The method of claim 1 , wherein the first timing advance is a non-zero timing advance and the second timing advance is a zero timing advance.
7. The method of claim 1 , further comprising:
receiving a first timing advance command, wherein the first timing advance is based on the first timing advance command;
receiving a second timing advance command; and
determining, based on the second timing advance command, the transmission timing difference.
8. The method of claim 1 , wherein the second uplink transmission comprises a random access preamble.
9. A wireless device comprising:
one or more processors; and
memory storing instructions that, when executed by the one or more processors, cause the wireless device to:
perform, using a first timing advance, a first uplink transmission via one or more secondary cells associated with a first cell group;
based on a transmission timing difference between the first cell group and a second cell group exceeding a threshold, stop uplink transmission via the one or more secondary cells; and
after stopping uplink transmission via the one or more secondary cells, perform, using a second timing advance, a second uplink transmission via the one or more secondary cells.
10. The wireless device of claim 9 , wherein the instructions, when executed by the one or more processors, cause the wireless device to:
determine that the one or more secondary cells are out-of-sync; and
perform the second uplink transmission during a time that the one or more secondary cells are out-of-sync.
11. The wireless device of claim 9 , wherein the instructions, when executed by the one or more processors, cause the wireless device to:
based on the transmission timing difference exceeding the threshold, determine that a time alignment timer is expired; and
perform the second uplink transmission during a time that the time alignment timer is not running.
12. The wireless device of claim 9 , wherein the transmission timing difference comprises a difference between:
uplink transmission timing associated with the first cell group; and
uplink transmission timing associated with the second cell group.
13. The wireless device of claim 9 , wherein the transmission timing difference comprises a difference between:
a timing of a first synchronization signal; and
a timing of a second synchronization signal.
14. The wireless device of claim 9 , wherein the first timing advance is a non-zero timing advance and the second timing advance is a zero timing advance.
15. The wireless device of claim 9 , wherein the instructions, when executed by the one or more processors, cause the wireless device to:
receive a first timing advance command, wherein the first timing advance is based on the first timing advance command;
receive a second timing advance command; and
determine, based on the second timing advance command, the transmission timing difference.
16. The wireless device of claim 9 , wherein the second uplink transmission comprises a random access preamble.
17. A non-transitory computer-readable medium storing instructions that, when executed, configure a wireless device to:
perform, using a first timing advance, a first uplink transmission via one or more secondary cells associated with a first cell group;
based on a transmission timing difference between the first cell group and a second cell group exceeding a threshold, stop uplink transmission via the one or more secondary cells; and
after stopping uplink transmission via the one or more secondary cells, perform, using a second timing advance, a second uplink transmission via the one or more secondary cells.
18. The non-transitory computer-readable medium of claim 17 , wherein the instructions, when executed, configure the wireless device to:
determine that the one or more secondary cells are out-of-sync; and
perform the second uplink transmission during a time that the one or more secondary cells are out-of-sync.
19. The non-transitory computer-readable medium of claim 17 , wherein the instructions, when executed, configure the wireless device to:
based on the transmission timing difference exceeding the threshold, determine that a time alignment timer is expired; and
perform the second uplink transmission during a time that the time alignment timer is not running.
20. The non-transitory computer-readable medium of claim 17 , wherein the transmission timing difference comprises a difference between:
uplink transmission timing associated with the first cell group; and
uplink transmission timing associated with the second cell group.
21. The non-transitory computer-readable medium of claim 17 , wherein the transmission timing difference comprises a difference between:
a timing of a first synchronization signal; and
a timing of a second synchronization signal.
22. The non-transitory computer-readable medium of claim 17 , wherein the first timing advance is a non-zero timing advance and the second timing advance is a zero timing advance.
23. The non-transitory computer-readable medium of claim 17 , wherein the instructions, when executed, configure the wireless device to:
receive a first timing advance command, wherein the first timing advance is based on the first timing advance command;
receive a second timing advance command; and
determine, based on the second timing advance command, the transmission timing difference.
24. The non-transitory computer-readable medium of claim 17 , wherein the second uplink transmission comprises a random access preamble.
25. A system comprising:
a base station comprising:
one or more processors; and
memory storing instructions; and
a wireless device comprising:
one or more processors; and
memory storing instructions,
wherein the instructions stored in the memory of the base station, when executed by the one or more processors of the base station, cause the base station to transmit one or more configuration parameters of a plurality of cell groups comprising a first cell group and a cell second group, and
wherein the instructions stored in the memory of the wireless device, when executed by the one or more processors of the wireless device, cause the wireless device to:
perform, using a first timing advance, a first uplink transmission via one or more secondary cells associated with the first cell group;
based on a transmission timing difference between the first cell group and the second cell group exceeding a threshold, stop uplink transmission via the one or more secondary cells; and
after stopping uplink transmission via the one or more secondary cells, perform, using a second timing advance, a second uplink transmission via the one or more secondary cells.
26. The system of claim 25 , wherein the instructions stored in the memory of the wireless device, when executed by the one or more processors of the wireless device, cause the wireless device to:
determine that the one or more secondary cells are out-of-sync; and
perform the second uplink transmission during a time that the one or more secondary cells are out-of-sync.
27. The system of claim 25 , wherein the instructions stored in the memory of the wireless device, when executed by the one or more processors of the wireless device, cause the wireless device to:
based on the transmission timing difference exceeding the threshold, determine that a time alignment timer is expired; and
perform the second uplink transmission during a time that the time alignment timer is not running.
28. The system of claim 25 , wherein the transmission timing difference comprises a difference between:
uplink transmission timing associated with the first cell group; and
uplink transmission timing associated with the second cell group.
29. The system of claim 25 , wherein the transmission timing difference comprises a difference between:
a timing of a first synchronization signal; and
a timing of a second synchronization signal.
30. The system of claim 25 , wherein the first timing advance is a non-zero timing advance and the second timing advance is a zero timing advance.
31. The system of claim 25 , wherein the instructions stored in the memory of the base station, when executed by the one or more processors of the base station, cause the base station to:
transmit a first timing advance command, wherein the first timing advance is based on the first timing advance command; and
transmit a second timing advance command, and
wherein the instructions stored in the memory of the wireless device, when executed by the one or more processors of the wireless device, cause the wireless device to determine, based on the second timing advance command, the transmission timing difference.
32. The system of claim 25 , wherein the second uplink transmission comprises a random access preamble.