IP Library Granted Patent US 12712697
Granted Patent B2
US 12712697 · App. 18/558,160 · Granted Aug 18, 2026

Channel state information (CSI) reporting for extended (signal to interference and noise ratio) SINR range for ultra reliable and low latency communication (URLLC)

Inventors: Sergey Panteleev (Kildare, IE); Debdeep Chatterjee (San Jose, CA); Fatemeh Hamidi-Sepehr (San Jose, CA); Salvatore Talarico (Santa Clara, CA); Toufiqul Islam (Santa Clara, CA)
Assignee: Intel Corporation
H04L5/0057H04L5/0094H04W72/541
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Quick Facts
Patent No.
US 12712697
App. No.
18/558,160
Granted
Aug 18, 2026
Kind
B2
Abstract

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.

Claims (31)

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.