USER EQUIPMENT AND BASE STATIONS THAT TRANSCEIVE ULTRA RELIABLE LOW LATENCY MESSAGES AMIDST DELAY TOLERANT TRANSCEPTIONS
A user equipment (UE) is described. The UE includes a processor and memory in electronic communication with the processor. Instructions stored in the memory are executable to transmit or receive an ultra-reliable low latency communication (URLLC) transmission that overrides a downlink (DL) schedule or interferes on an uplink (UL) transmission with an enhanced mobile broadband (eMBB) transmission or a massive machine type communication (MMTC) transmission.
1 . A user equipment (UE) comprising:
a processor; and
memory in electronic communication with the processor, wherein instructions stored in the memory are executable to:
transmit or receive an ultra-reliable low latency communication (URLLC) transmission that overrides a downlink (DL) schedule or interferes on an uplink (UL) transmission with an enhanced mobile broadband (eMBB) transmission or a massive machine type communication (MMTC) transmission.
2 . The UE of claim 1 , wherein configuration to transmit or receive URLLC services is indicated in a configuration message where time, frequency and spatial resources are potentially used for URLLC transmission or reception.
3 . The UE of claim 1 , wherein prioritization of the URLLC transmission on the uplink is based on power control effected via measurements from either one or more DL reference signals (RSs) or explicitly via one or more sounding reference signal (SRSs).
4 . The UE of claim 1 , wherein configurable transport block (TB) interleaving is used for eMBB services transmission and reception.
5 . The UE of claim 1 , wherein a DCI format indicates TB interleaving for eMBB services transmission and reception.
6 . The UE of claim 1 , wherein a soft buffer size indication in a UE capability information transmission is used to determine TB interleaving parameters.
7 . A user equipment (UE) comprising:
a processor; and
memory in electronic communication with the processor, wherein instructions stored in the memory are executable to:
transmit or receive an enhanced mobile broadband (eMBB) signal or a massive machine type communication (MMTC) signal that may have its reception overridden by an ultra-reliable low latency communication (URLLC) transmission or have its reception at an evolved node B (eNB) interfered with by an URLLC transmission.
8 . The UE of claim 7 , wherein configuration to transmit or receive eMBB services is indicated in a configuration message where time, frequency and spatial resources are potentially used for URLLC transmission or reception.
9 . The UE of claim 7 , wherein prioritization of the URLLC transmission on the uplink is based on power control effected via measurements from either one or more DL reference signals (RSs) or explicitly via one or more sounding reference signal (SRSs).
10 . The UE of claim 7 , wherein configurable transport block (TB) interleaving is used for eMBB services transmission and reception.
11 . The UE of claim 7 , wherein a DCI format indicates TB interleaving for eMBB services transmission and reception.
12 . The UE of claim 7 , wherein a soft buffer size indication in a UE capability information transmission is used to determine TB interleaving parameters.
13 . An evolved node B (eNB) comprising:
a processor; and
memory in electronic communication with the processor, wherein instructions stored in the memory are executable to:
transmit or receive an ultra-reliable low latency communication (URLLC) transmission that overrides a downlink (DL) schedule or interferes on an uplink (UL) transmission with an enhanced mobile broadband (eMBB) transmission or a massive machine type communication (MMTC) transmission.
14 . The eNB of claim 13 , wherein configuration to transmit or receive URLLC services is indicated in a configuration message where time, frequency and spatial resources are potentially used for URLLC transmission or reception.
15 . The eNB of claim 13 , wherein prioritization of the URLLC transmission on the uplink is based on power control effected via measurements from either one or more DL reference signals (RSs) or explicitly via one or more sounding reference signal (SRSs).
16 . The eNB of claim 13 , wherein configurable transport block (TB) interleaving is used for eMBB services transmission and reception.
17 . The eNB of claim 13 , wherein a DCI format indicates TB interleaving for eMBB services transmission and reception.
18 . The eNB of claim 13 , wherein a soft buffer size indication in a UE capability information transmission is used to determine TB interleaving parameters.
19 . An evolved node B (eNB) comprising:
a processor; and
memory in electronic communication with the processor, wherein instructions stored in the memory are executable to:
transmit or receive an enhanced mobile broadband (eMBB) or massive machine type communication (MMTC) signal that may have its reception overridden by an ultra-reliable low latency communication (URLLC) transmission or have its reception at the eNB interfered with by an URLLC transmission.
20 . The eNB of claim 19 , wherein configuration to transmit or receive eMBB services is indicated in a configuration message where time, frequency and spatial resources are potentially used for URLLC transmission or reception.
21 . The eNB of claim 19 , wherein prioritization of the URLLC transmission on the uplink is based on power control effected via measurements from either one or more DL reference signals (RSs) or explicitly via one or more sounding reference signal (SRSs).
22 . The eNB of claim 19 , wherein configurable transport block (TB) interleaving is used for eMBB services transmission and reception.
23 . The eNB of claim 19 , wherein a DCI format indicates TB interleaving for eMBB services transmission and reception.
24 . The eNB of claim 19 , wherein a soft buffer size indication in a UE capability information transmission is used to determine TB interleaving parameters.