Lte-u uplink waveform and variable multi-subframe scheduling
US-2015085797-A1 · Mar 26, 2015 · US
US9755794B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9755794-B2 |
| Application number | US-201114116622-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 10, 2011 |
| Priority date | May 10, 2011 |
| Publication date | Sep 5, 2017 |
| Grant date | Sep 5, 2017 |
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A method in a base station for handling a scheduling of a narrowband transmission from a user equipment in a cell served by the base station is provided. The base station and the user equipment are comprised in a cellular network. A time resource available for the scheduling is divided into available subframes. A frequency resource available for scheduling in each respective subframe is divided into available resource blocks. The base station selects a subframe among the subframes available for scheduling. Narrowband transmissions are to be prioritized for scheduling to the selected subframe. The base station schedules the transmission to a subset of the available resource blocks in the selected subframe when an indication that the transmission from the user equipment is a narrowband transmission is obtained.
Opening claim text (preview).
The invention claimed is: 1. A method in a base station for handling a scheduling of a narrowband transmission from a user equipment in a cell served by the base station, which base station and which user equipment are comprised in a cellular network, the method comprising: dividing a time resource available for the scheduling into available subframes; dividing a frequency resource available for scheduling in each respective subframe into available resource blocks; selecting, from among the subframes of the time resource available for scheduling, a subframe in which narrowband transmissions are prioritized for scheduling; and when an indication that the transmission from the user equipment is a narrowband transmission is obtained, scheduling the transmission from the user equipment to a subset of contiguous available resource blocks that i) are in the selected subframe which prioritizes narrowband transmissions, and ii) occupy a portion of the available frequency resource that has a better channel quality than other portions of the available frequency resource, wherein narrowband transmissions are prioritized for scheduling to the selected subframe based on the number of resource blocks they are to be scheduled to, and wherein the scheduling is based on a channel quality variation among available resource blocks in the selected subframe. 2. The method according to claim 1 , wherein the indication is at least one of a channel quality measurement of the user equipment, a power headroom of the user equipment, a previous number of resource blocks used by the user equipment, and a buffer status of the user equipment. 3. The method according to claim 2 , wherein the transmission is narrowband due to the user equipment being power limited, and wherein the indication is at least one of a channel quality measurement of the user equipment and a power headroom of the user equipment. 4. The method according to claim 2 , wherein the transmission is narrowband due to a data amount to be transmitted from the user equipment, and wherein the indication is a buffer status of the user equipment. 5. The method according to claim 1 , wherein the selecting is performed such that the selected subframe does not overlap a further selected subframe of a further cell comprised in the cellular network. 6. A base station for handling a scheduling of a narrowband transmission from a user equipment in a cell served by the base station, which base station and which user equipment are comprised in a cellular network, the base station comprising: a processor and a memory, the processor being configured to: (a) divide a time resource available for the scheduling into available subframes, (b) divide frequency resource available for scheduling in each respective subframe into available resource blocks, (c) select, from among the subframes of the time resource available for scheduling, a subframe in which narrowband transmissions are prioritized for scheduling; and (d) when an indication that the transmission from the user equipment is a narrowband transmission is obtained, schedule the transmission from the user equipment to a subset of contiguous available resource blocks that i) are in the selected subframe which prioritizes narrowband transmissions, and ii) occupy a portion of the available frequency resource that has a better channel quality than other portions of the available frequency resource, wherein narrowband transmissions are prioritized for scheduling to the selected subframe based on the number of resource blocks they are to be scheduled to, and wherein the scheduling is based on a channel quality variation among available resource blocks in the selected subframe. 7. The base station according to claim 6 , wherein the indication is at least one of a channel quality measurement of the user equipment, a power headroom of the user equipment, a previous number of resource blocks used by the user equipment, and a buffer status of the user equipment. 8. The base station according to claim 7 , wherein the transmission is narrowband due to the user equipment being power limited, and wherein the indication is at least one of a channel quality measurement of the user equipment and a power headroom of the user equipment. 9. The base station according to claim 7 , wherein the transmission is narrowband due to a data amount to be transmitted from the user equipment, and wherein the indication is a buffer status of the user equipment. 10. The base station according to claim 6 , wherein the processor is further configured to perform the selecting such that the selected subframe does not overlap a further selected subframe of a further cell comprised in the cellular network. 11. The method of claim 1 , wherein only narrowband transmissions are scheduled to the selected subframe. 12. The method of claim 1 , wherein at least two of the available subframes are adjacent to each other and are each divided into resource blocks of equal size. 13. The method according to claim 1 , wherein the selected subframe for narrowband transmissions of cell-edge user equipments is prioritized over the subframe where cell-center user equipments are scheduled. 14. The base station according to claim 6 , wherein the selected subframe for narrowband transmissions of cell-edge user equipments is prioritized over the subframe where cell-center user equipments are scheduled.
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