IP Library Granted Patent US 12689467
Granted Patent B2
US 12689467 · App. 18/630,904 · Granted Jul 21, 2026

Interleaver adapted for channel estimation quality imbalances

Inventors: David Yunusov (Holon, IL); Amit Bar-Or Tillinger (Tel-Aviv, IL); Gideon Shlomo Kutz (Ramat Hasharon, IL)
Assignee: QUALCOMM Incorporated
H04L1/0071H04L1/0057H04W72/21H04W72/232
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Quick Facts
Patent No.
US 12689467
App. No.
18/630,904
Granted
Jul 21, 2026
Kind
B2
Abstract

Methods, systems, and devices for wireless communications are described. A first wireless device receives or transmits, from a second wireless device, first signaling indicating a size of a precoding resource block group and an offset parameter indicating an offset between the precoding resource block group and a codeblock. The first wireless device transmits or receives second signaling indicating a resource element starting parameter and a resource element ending parameter in at least one of a time domain and a frequency domain based at least in part on the size of the precoding resource block group. The first and second wireless devices communicate coded bit streams that are interleaved in accordance with at least one of the size of the precoding resource block group, the offset parameter, the resource element starting parameter, the resource element ending parameter, or any combination thereof.

Claims (47)

1 . A first wireless device, comprising:

one or more memories storing processor-executable code; and

one or more processors coupled with the one or more memories and individually or collectively operable to execute the code to cause the first wireless device to:

receive, from a second wireless device, first signaling indicating a size of a precoding resource block group and an offset parameter indicating an offset between the precoding resource block group and a codeblock;

transmit second signaling indicating a resource element starting parameter and a resource element ending parameter in at least one of a time domain and a frequency domain based at least in part on the size of the precoding resource block group; and

communicate, with the second wireless device, a coded bit stream that is interleaved in accordance with at least one of the size of the precoding resource block group, the offset parameter, the resource element starting parameter, the resource element ending parameter, or any combination thereof.

2 . The first wireless device of claim 1 , wherein:

the first signaling further indicates whether the offset between the precoding resource block group and the codeblock is a vector in a frequency domain or a time domain, and

the second signaling further indicates whether the resource element starting parameter and the resource element ending parameter are in the frequency domain or the time domain.

3 . The first wireless device of claim 1 , wherein, to communicate with the second wireless device, the one or more processors are individually or collectively further operable to execute the code to cause the first wireless device to:

receive, from the second wireless device, the coded bit stream; and

decode the coded bit stream based at least in part on the offset parameter, the resource element starting parameter, and the resource element ending parameter.

4 . The first wireless device of claim 3 , wherein, to decode the coded bit stream, the one or more processors are individually or collectively further operable to execute the code to cause the first wireless device to:

decode the coded bit stream into a plurality of resource elements, wherein a first set of the plurality of resource elements includes parity bits and systematic bits, and wherein a second set of the plurality of resource elements includes parity bits and no systematic bits.

5 . The first wireless device of claim 3 , wherein the coded bit stream comprises a first set of parity bits located at a beginning of the precoding resource block group and at an ending of the precoding resource block group.

6 . The first wireless device of claim 5 , wherein the beginning of the precoding resource block group and the ending of the precoding resource block group are based at least in part on at least one processing gain threshold.

7 . The first wireless device of claim 1 , wherein:

the first signaling is received via a first radio resource control message, first downlink control information, or first uplink control information, and

the second signaling is received via a second radio resource control message, second downlink control information, or second uplink control information.

8 . The first wireless device of claim 1 , wherein the offset parameter is a resource element offset or a time-symbols offset.

9 . The first wireless device of claim 1 , wherein the precoding resource block group comprises a set of resource precoding resource blocks which are consecutive in a frequency domain.

10 . A first wireless device, comprising:

one or more memories storing processor-executable code; and

one or more processors coupled with the one or more memories and individually or collectively operable to execute the code to cause the first wireless device to:

transmit, to a second wireless device, first signaling indicating a size of a precoding resource block group and an offset parameter indicating an offset between the precoding resource block group and a codeblock;

receive second signaling indicating a resource element starting parameter and a resource element ending parameter in at least one of a time domain and a frequency domain based at least in part on the size of the precoding resource block group; and

communicate, with the second wireless device, a coded bit stream that is interleaved in accordance with at least one of the size of the precoding resource block group, the offset parameter, the resource element starting parameter, the resource element ending parameter, or any combination thereof.

11 . The first wireless device of claim 10 , wherein, to communicate with the second wireless device, the one or more processors are individually or collectively further operable to execute the code to cause the first wireless device to:

transmit, from the second wireless device, the coded bit stream.

12 . The first wireless device of claim 11 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the first wireless device to:

encode a plurality of resource elements into the coded bit stream, wherein a first set of the plurality of resource elements includes parity bits and systematic bits, and wherein a second set of the plurality of resource elements includes parity bits and no systematic bits.

13 . The first wireless device of claim 10 , wherein the coded bit stream comprises a first set of parity bits located at a beginning of the precoding resource block group and at an ending of the precoding resource block group.

14 . The first wireless device of claim 13 , wherein the beginning of the precoding resource block group and the ending of the precoding resource block group are based at least in part on at least one processing gain threshold.

15 . The first wireless device of claim 10 , wherein:

the first signaling is received via a first radio resource control message, first downlink control information, or first uplink control information, and

the second signaling is received via a second radio resource control message, second downlink control information, or second uplink control information.

16 . The first wireless device of claim 10 , wherein the offset parameter is a resource element offset or a time-symbols offset.

17 . The first wireless device of claim 10 , wherein the precoding resource block group comprises a set of resource precoding resource blocks which are consecutive in a frequency domain.

18 . A method for wireless communications at a first wireless device, comprising:

receiving, from a second wireless device, first signaling indicating a size of a precoding resource block group and an offset parameter indicating an offset between the precoding resource block group and a codeblock;

transmitting second signaling indicating a resource element starting parameter and a resource element ending parameter in at least one of a time domain and a frequency domain based at least in part on the size of the precoding resource block group; and

communicating, with the second wireless device, a coded bit stream that is interleaved in accordance with at least one of the size of the precoding resource block group, the offset parameter, the resource element starting parameter, the resource element ending parameter, or any combination thereof.

19 . The method of claim 18 , wherein communicating with the second wireless device further comprises:

receiving, from the second wireless device, the coded bit stream; and

decoding the coded bit stream based at least in part on the offset parameter, the resource element starting parameter, and the resource element ending parameter.

20 . The method of claim 19 , wherein decoding the coded bit stream further comprises:

decoding the coded bit stream into a plurality of resource elements, wherein a first set of the plurality of resource elements includes parity bits and systematic bits, and wherein a second set of the plurality of resource elements includes parity bits and no systematic bits.