Method and apparatus for prioritization between position services and radio communication services
Method, apparatus and means for prioritized performance of at least one of a positioning session or a radio communication session at a user equipment, by the following steps: identifying ( 1210 ) an expected collision of the positioning session and the radio communication session; determining ( 1220 ) a priority between the positioning session and the radio communication session; and performing ( 1230 ) at least one of the positioning session or the radio communication session in accordance with the priority.
1 . A user equipment comprising:
one or more receivers;
one or more memories; and
one or more processors, communicatively coupled to the one or more receiver and the one or more memories, configured to:
identify an expected collision of a positioning session and a radio communication session;
determine a priority between the positioning session and the radio communication session based on at least one of a scheduled measurement gap being dedicated to positioning, or an absence of a scheduled measurement gap being dedicated to positioning; and
perform at least one of the positioning session or the radio communication session in accordance with the priority.
2 . The user equipment of claim 1 , wherein the one or more processors are configured to determine the priority, in response to a positioning technique being a technique that uses both downlink reference signals and uplink reference signals, such that equal priority relative to the radio communication session is given to downlink positioning reference signal handling and to uplink sounding reference signal for positioning handling.
3 . The user equipment of claim 1 , wherein the one or more processors are configured to determine the priority such that inequal priorities relative to the radio communication session are given to downlink positioning reference signal handling and to uplink sounding reference signal for positioning handling.
4 . The user equipment of claim 1 , wherein the one or more processors are configured to determine an expiration time of the priority.
5 . The user equipment of claim 1 , wherein the one or more processors are configured to determine the priority based on whether the positioning session includes exchanging positioning information over a cellular network connection or over a sidelink connection.
6 . The user equipment of claim 1 , wherein the one or more processors are configured to determine the priority based on a priority instruction received via the one or more receivers.
7 . The user equipment of claim 6 , further comprising one or more transmitters communicatively coupled to the one or more processors, wherein the one or more processors are configured to send a request, via the one or more transmitters, for the priority to give higher priority to the positioning session.
8 . The user equipment of claim 1 , wherein the one or more processors are configured to determine the priority such that the positioning session has higher priority than the radio communication session in response to a single measurement gap being scheduled.
9 . The user equipment of claim 1 , wherein the one or more processors are configured to determine the priority such that the positioning session has lower priority than the radio communication session in response to a plurality of measurement gaps being scheduled.
10 . The user equipment of claim 1 , wherein the one or more processors are configured to determine the priority such that the positioning session has lower priority than the radio communication session for a first measurement gap of a plurality of scheduled measurement gaps in response to a second measurement gap of the plurality of scheduled measurement gaps being dedicated to positioning.
11 . The user equipment of claim 1 , wherein the one or more processors are configured to determine the priority based on a quality-of-service metric for position information to be provided by the one or more processors in the positioning session.
12 . The user equipment of claim 1 , wherein the one or more processors are configured to determine the priority between the positioning session and the radio communication session based on whether the radio communication session includes at least one of: a physical downlink control channel signal, a physical downlink shared channel signal, a channel state information reference signal, a sidelink communication, a radio resource management procedure, a downlink data reception procedure, an uplink data transmission procedure, or a channel state information procedure.
13 . A method, of prioritized performance of at least one of a positioning session or a radio communication session at a user equipment, comprising:
identifying an expected collision of the positioning session and the radio communication session;
determining a priority between the positioning session and the radio communication session based on at least one of a scheduled measurement gap being dedicated to positioning, or an absence of a scheduled measurement gap being dedicated to positioning; and
performing at least one of the positioning session or the radio communication session in accordance with the priority.
14 . The method of claim 13 , wherein the priority is determined, in response to a positioning technique being a technique that uses both downlink reference signals and uplink reference signals, such that equal priority relative to the radio communication session is given to downlink positioning reference signal handling and to uplink sounding reference signal for positioning handling.
15 . The method of claim 13 , wherein the priority is determined such that inequal priorities relative to the radio communication session are given to downlink positioning reference signal handling and to uplink sounding reference signal for positioning handling.
16 . The method of claim 13 , further comprising determining an expiration time of the priority.
17 . The method of claim 13 , wherein the priority is determined based on whether the positioning session includes exchanging positioning information over a cellular network connection or over a sidelink connection.
18 . The method of claim 13 , wherein the priority is determined based on a priority instruction received by the user equipment from a network entity.
19 . The method of claim 18 , further comprising sending a request to the network entity for the priority instruction indicating for the user equipment to give higher priority to the positioning session.
20 . The method of claim 13 , wherein the priority is determined such that the positioning session has higher priority than the radio communication session in response to a single measurement gap being scheduled.
21 . The method of claim 13 , wherein the priority is determined such that the positioning session has lower priority than the radio communication session in response to a plurality of measurement gaps being scheduled.
22 . The method of claim 13 , wherein the priority is determined such that the positioning session has lower priority than the radio communication session for a first measurement gap of a plurality of scheduled measurement gaps in response to a second measurement gap of the plurality of scheduled measurement gaps being dedicated to positioning.
23 . The method of claim 13 , wherein the priority is determined based on a quality-of-service metric for position information to be provided by the user equipment in the positioning session.
24 . The method of claim 13 , wherein the priority is determined based on whether the radio communication session includes at least one of: a physical downlink control channel signal, a physical downlink shared channel signal, a channel state information reference signal, a sidelink communication, a radio resource management procedure, a downlink data reception procedure, an uplink data transmission procedure, or a channel state information procedure.
25 . A user equipment comprising:
means for identifying an expected collision of a positioning session and a radio communication session;
means for determining a priority between the positioning session and the radio communication session based on at least one of a scheduled measurement gap being dedicated to positioning, or an absence of a scheduled measurement gap being dedicated to positioning; and
means for performing at least one of the positioning session or the radio communication session in accordance with the priority.
26 . A non-transitory, processor-readable storage medium comprising processor-readable instructions to cause one or more processors, in order to prioritize performance of at least one of a positioning session or a radio communication session at a user equipment, to:
identify an expected collision of the positioning session and the radio communication session;
determine a priority between the positioning session and the radio communication session based on at least one of a scheduled measurement gap being dedicated to positioning, or an absence of a scheduled measurement gap being dedicated to positioning; and
perform at least one of the positioning session or the radio communication session in accordance with the priority.