Method and an apparatus to control scheduling
US-10028295-B2 · Jul 17, 2018 · US
US11089612B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11089612-B2 |
| Application number | US-201916591512-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 2, 2019 |
| Priority date | Nov 8, 2018 |
| Publication date | Aug 10, 2021 |
| Grant date | Aug 10, 2021 |
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Examples pertaining to improvement on user equipment (UE) uplink latency in wireless communications are described. When an apparatus is in a special mode, a processor of the apparatus transmits to a network a request for permission to perform an uplink (UL) transmission for a plurality of times. The processor then receives from the network a grant. In response to receiving the grant, the processor performs the UL transmission to the network. In transmitting the request for the plurality of times, the processor transmits the request for the plurality of times at a frequency higher than a frequency at which the request to perform UL transmissions is transmitted to the network when the apparatus is in a normal operational mode.
Opening claim text (preview).
What is claimed is: 1. A method, comprising: transmitting, by a processor of an apparatus in a special mode, to a network a request for permission to perform an uplink (UL) transmission for a plurality of times; receiving, by the processor, from the network a grant; and performing, by the processor, the UL transmission to the network responsive to receiving the grant, wherein the transmitting of the request for the plurality of times comprises transmitting the request for the plurality of times at a frequency higher than a frequency at which the request to perform UL transmissions is transmitted to the network when the apparatus is in a normal operational mode, wherein the special mode is a forced mode or a background mode, wherein, responsive to the special mode being the forced mode, the transmitting of the request in the forced mode comprises: entering the forced mode; continuously transmitting the request for the plurality of times while in the forced mode without knowledge of any user data available for the UL transmission; and exiting, responsive to an occurrence of any of a plurality of predefined events, the forced mode to stop the continuously transmitting of the request, wherein, responsive to the special mode being the background mode, the transmitting of the request in the background mode comprises: transmitting lower-priority data continuously or periodically to maintain UL transmission grants unless there is higher-priority data to be transmitted; and transmitting the higher-priority data, in lieu of the lower-priority data, when the higher-priority data is available from an application. 2. The method of claim 1 , wherein the transmitting of the request comprises transmitting a scheduling request (SR). 3. The method of claim 1 , wherein the transmitting of the request comprises transmitting a non-zero buffer status report (BSR). 4. The method of claim 1 , wherein the plurality of predefined events comprise: expiration of a predetermined period for being in the forced mode; receiving an input to start one operation; and receiving another input to stop another operation. 5. The method of claim 1 , wherein the performing of the UL transmission comprises: determining that there is no buffered data to be transmitted in the UL transmission; and performing the UL transmission of any of: a modem medium access control (MAC) padding; a modem layer 2 control data, retransmission data or an invalid protocol data unit (PDU); and network dummy data. 6. The method of claim 5 , wherein the modem MAC padding is configured as a frequency-based transmission parameter or a threshold configuration, and wherein the networking dummy data comprises any of: a private Internet Protocol (IP) address data; an IP packet data designated for a predetermined IP address or a random IP address, with a time-to-live (TTL) value of the IP packet data less than a predefined TTL value; and a service data designated for a predetermined server. 7. A method, comprising: transmitting, by a processor of an apparatus in a special mode, to a network a request for permission to perform an uplink (UL) transmission for a plurality of times; receiving, by the processor, from the network a grant; and performing, by the processor, the UL transmission to the network responsive to receiving the grant, wherein the transmitting of the request for the plurality of times comprises transmitting the request for the plurality of times at a frequency higher than a frequency at which the request to perform UL transmissions is transmitted to the network when the apparatus is in a normal operational mode, and wherein the special mode is an event-triggered mode, and wherein the transmitting of the request in the event-triggered mode comprises: receiving information from one or more information sources associated with the apparatus; predicting, based on the received information, a need to perform the UL transmission; and transmitting the request for the plurality of times responsive to the predicting, wherein the performing of the UL transmission comprises: determining that there is no buffered data to be transmitted in the UL transmission; and performing the UL transmission of any of: a modem medium access control (MAC) padding; a modem layer 2 control data, retransmission data or an invalid protocol data unit (PDU); and network dummy data, wherein the modem MAC padding is configured as a frequency-based transmission parameter or a threshold configuration, and wherein the networking dummy data comprises any of: a private Internet Protocol (IP) address data; an IP packet data designated for a predetermined IP address or a random IP address, with a time-to-live (TTL) value of the IP packet data less than a predefined TTL value; and a service data designated for a predetermined server. 8. The method of claim 7 , wherein the predicting of the need to perform the UL transmission comprises detecting at least one of a plurality of predefined events based on the received information. 9. The method of claim 8 , wherein the plurality of predefined events comprise: detection of a touch of a screen of the apparatus; activation of or performing of an operation by a gyroscope of the apparatus; activation of or performing of an operation by an accelerometer of the apparatus; detection of a press of a key on the apparatus; receiving of an input by another device of the apparatus; detection of an occurrence of a hardware event with respect to a hardware of the apparatus; and detection of an occurrence of a software flow with respect to a software executed on the apparatus. 10. An apparatus, comprising: a processor which, during operation, performs operations comprising: transmitting, when the apparatus is in a special mode, to a network a request for permission to perform an uplink (UL) transmission for a plurality of times; receiving from the network a grant; and performing the UL transmission to the network responsive to receiving the grant, wherein, in transmitting the request for the plurality of times, the processor transmit the request for the plurality of times at a frequency higher than a frequency at which the request for perform to perform UL transmissions is transmitted to the network when the apparatus is in a normal operational mode, wherein the special mode is an event-triggered mode, a forced mode, or a background mode, wherein, responsive to the special mode being the event-triggered mode: in transmitting the request in the event-triggered mode, the processor performs operations comprising: receiving information from one or more information sources associated with the apparatus; predicting, based on the received information, a need to perform the UL transmission by detecting at least one of a plurality of predefined events based on the received information; and transmitting the request for the plurality of times responsive to the predicting, in performing the UL transmission, the processor performs operations comprising: determining that there is no buffered data to be transmitted in the UL transmission; and performing the UL transmission of any of: a modem medium access control (MAC) padding; a modem layer 2 control data, retransmission data or an invalid protocol data unit (PDU); and network dummy data, the modem MAC padding is configured as a frequency-based transmission parameter or a threshold configuration, the networking dummy data comprises any of: a private Internet Protocol (IP) address data; an IP packet data designated for a predetermined IP address or a random IP address, with a time-to-live (TTL) value of the IP packet data less than a
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