Channel state information (CSI) reporting for extended (signal to interference and noise ratio) SINR range for ultra reliable and low latency communication (URLLC)
Various embodiments herein provide techniques related to CWI for a wideband and one or more sub-bands of the wideband. In embodiments, a user equipment (UE) transmit a wideband channel quality index (CQI) report related to the channel state information (CSI) of the wideband. The UE may further identify, from the set of 2, 3, 4, and 5, a number of bits to use for a sub-band CQI report related to a sub-band of the one or more sub-bands, and transmit a sub-band CQI report based on the identified number of bits. Other embodiments may be described and/or claimed.
1 . A user equipment (UE) comprising:
memory to store identified channel state information (CSI) for a wideband and one or more sub-bands of the wideband, wherein the CSI is related to a signal to interference and noise ratio (SINR) of the wideband and respective SINRs of the one or more sub-bands; and
one or more processors configured to:
facilitate transmission of a wideband channel quality index (CQI) report related to the CSI of the wideband;
identify, from the set of 2, 3, 4, and 5, a number of bits to use for a sub-band CQI report related to a sub-band of the one or more sub-bands; and
facilitate transmission of a sub-band CQI report based on the identified number of bits, wherein the sub-band CQI report is related to the CSI of the sub-band, and wherein the identified number of bits is configured to provide an extended SINR reporting range for the sub-band relative to the wideband CQI report.
2 . The UE of claim 1 , wherein the identified number of bits is based on an indication received from a base station provide the extended SINR reporting range.
3 . The UE of claim 1 , wherein the sub-band CQI report indicates that the sub-band has a spectral efficiency (SE) value that is greater than the SE of a highest possible value that can be signaled by a 4-bit CQI table.
4 . The UE of claim 3 , wherein the sub-band CQI report indicates that the sub-band has a SE value that is greater than the SE of the highest possible value that can be indicated by a 4-bit CQI table by at least Y bits/second/Hertz (Hz), where Y is pre-defined or provided to the UE via higher layer signalling.
5 . The UE of claim 1 , wherein the sub-band CQI report indicates that the sub-band has a spectral efficiency (SE) value that is smaller than the SE of a lowest possible valid CQI value that can be signaled by a 4-bit CQI table.
6 . The UE of claim 5 , wherein the sub-band CQI report indicates that the sub-band has a SE value that is smaller than the SE of the smallest possible valid CQI value that can be indicated by a 4-bit CQI table by at least Z bits/second/hertz (Hz), where Z is pre-defined or is provided to the UE via higher layer signalling.
7 . The UE of claim 1 , wherein the sub-band CQI report indicates a measured CQI of 0 that corresponds to a spectral efficiency (SE) value of at least Z bits/second/Hertz (Hz) smaller than the CQI value=1.
8 . The UE of claim 1 , wherein the sub-band CQI report includes 2{circumflex over ( )}(identified number of bits) levels with respect to the wideband CQI report, and wherein the UE is further configured with A levels above a reported wideband CQI value and (2{circumflex over ( )}(identified number of bits)−A) levels below the reported wideband CQI value.
9 . The UE of claim 8 , wherein the value of A is specified as a function of the identified number of bits for the sub-band CQI report.
10 . The UE of claim 8 , wherein the value of A is a function of the identified number of bits of the sub-band CQI report and the reported wideband CQI value.
11 . The UE of claim 1 , wherein all sub-bands are configured with 4-bit CQI reporting and a sub-band CQI value is determined as a sum of the value reported by the UE in the sub-band CQI report and a value reported by the UE in the wideband CQI report that is interpreted as an offset with a range of [−8 . . . +7] or [X . . . X+15], where the value of X is provided to the UE by higher layers from the integers {−15, . . . , 15}.
12 . The UE of claim 11 , wherein, if the sub-band CQI value is less than 1 or greater than 15, a corresponding spectral efficiency (SE) is scaled.
13 . A base station comprising:
one or more processors; and
one or more computer-readable media comprising instructions that, upon execution of the instructions by the one or more processors, are to cause the base station to:
identify, from a user equipment (UE), a wideband channel quality index (CQI) report related to the wideband;
process the wideband CQI report to identify channel state information (CSI) of the wideband, wherein the CSI of the wideband is related to a signal to interference and noise ratio (SINR) of the wideband;
identify, from the UE, a sub-band CQI report related to a sub-band of one or more sub-bands, wherein the sub-band CQI report is transmitted using a number of bits identified from the set of 2, 3, 4, and; and
process the sub-band CQI report to identify CSI of the sub-band, wherein the CSI of the sub-band is related to a SINR of the sub-band, and wherein the number of bits is configured to provide an extended SINR reporting range for the sub-band relative to the wideband CQI report.
14 . The base station of claim 13 , wherein the instructions are further to transmit, to the UE, an indication of the number of bits to use for the sub-band CQI report to provide the extended SINR reporting range.
15 . The base station of claim 13 , wherein the sub-band CQI report indicates that the sub-band has a spectral efficiency (SE) value that is greater than the SE of a highest possible value that can be signaled by a 4-bit CQI table.
16 . The base station of claim 15 , wherein the sub-band CQI report indicates that the sub-band has a SE value that is greater than the SE of the highest possible value that can be indicated by a 4-bit CQI table by at least Y bits/second/Hertz (Hz), where Y is pre-defined or provided to the UE via higher layer signalling.
17 . The base station of claim 13 , wherein the sub-band CQI report indicates that the sub-band has a spectral efficiency (SE) value that is smaller than the SE of a lowest possible valid CQI value that can be signaled by a 4-bit CQI table.
18 . The base station of claim 17 , wherein the sub-band CQI report indicates that the sub-band has a SE value that is smaller than the SE of the smallest possible valid CQI value that can be indicated by a 4-bit CQI table by at least Z bits/second/hertz (Hz), where Z is pre-defined or is provided to the UE via higher layer signalling.
19 . The base station of claim 13 , wherein the sub-band CQI report indicates a measured CQI of 0 that corresponds to a spectral efficiency (SE) value of at least Z bits/second/Hertz (Hz) smaller than the CQI value=1.
20 . The base station of claim 13 , wherein the sub-band CQI report includes 2{circumflex over ( )}(number of bits used to transmit the sub-band CQI report) levels with respect to the wideband CQI report, and wherein the UE is further configured with A levels above a reported wideband CQI value and (2{circumflex over ( )}(number of bits used to transmit the sub-band CQI report)−A) levels below the reported wideband CQI value.