Network node user device and methods thereof
US-2018027550-A1 · Jan 25, 2018 · US
US11729668B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11729668-B2 |
| Application number | US-201917278221-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 20, 2019 |
| Priority date | Sep 20, 2018 |
| Publication date | Aug 15, 2023 |
| Grant date | Aug 15, 2023 |
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The present disclosure relates to a 5th (5G) generation) or pre-5G communication system for supporting a higher data transmission rate beyond a 4th (4G) generation communication system such as long term evolution (LTE). An operating method of a base station in a wireless communication system according to various embodiments of the present disclosure includes generating at least one compressed symbol based on modulation compression, transmitting to another base station, control information including position indication information which indicates a position of a subcarrier at which a first subcarrier signal is transmitted in a physical resource block (PRB) to which the at least one compressed symbol is mapped, and power indication information for indicating a transmit power of the first subcarrier signal, and transmitting the at least one compressed symbol to the another base station. Thus, transmission capacity may be optimized, and efficient modulation compression is possible.
Opening claim text (preview).
The invention claimed is: 1. A digital unit (DU) in a wireless communication system, comprising: a transceiver; and at least one processor configured to: generate at least one compressed symbol based on modulation compression using an in-phase data (I-data) and a quadrature-phase data (Q-data), and wherein each of the I-data and the Q-data is represented by at least one bit determined based on modulation order; transmit, to a radio unit (RU) through a fronthaul, control information including: position indication information for indicating a position of a first subcarrier signal transmitted in a physical resource block (PRB) to which the at least one compressed symbol is mapped, and power indication information for indicating a transmit power of the first subcarrier signal associated with a scaler value for the modulation compression; and transmit the at least one compressed symbol to the RU. 2. The DU of claim 1 , wherein the position indication information comprises reMask which is set in a section header of the control information, wherein the power indication information comprise modCompScaler which is set in a section extender of the control information. 3. The DU of claim 2 , wherein the reMask is expressed by 12 bits, and wherein the modCompScaler is expressed by 15 bits. 4. The DU of claim 1 , wherein the wireless communication system comprises a communication system to which a function split is applied, and wherein the RU allows support for the modulation compression. 5. The DU of claim 1 , wherein the control information further comprises position indication information for indicating a position of a second subcarrier signal transmitted in the PRB, and power indication information for indicating a transmit power of the second subcarrier signal, wherein the first subcarrier signal comprises one of a physical downlink shared channel (PDSCH), a physical downlink control channel (PDCCH), a demodulation reference signal (DM-RS) for the PDSCH, a DM-RS for the PDCCH, a channel state information-reference signal (CSI-RS), a physical broadcast channel (PBCH), a primary synchronization signal (PSS), or a secondary synchronization signal (SSS), and wherein the second subcarrier signal comprises another one of the PDSCH, the PDCCH, the DM-RS for the PDSCH, the DM-RS for the PDCCH, the CSI-RS, the PBCH, the PSS and the SSS. 6. A radio unit (RU) in a wireless communication system, comprising: a transceiver; and at least one processor configured to: receive, from a digital unit (DU) through a fronthaul, control information including: position indication information for indicating a position of a first subcarrier signal transmitted in a physical resource block (PRB) to which at least one compressed symbol is mapped, and power indication information for indicating a transmit power of the first subcarrier signal associated with a scaler value for modulation compression, receive, from the DU, the at least one compressed symbol; and perform modulation decompression to the at least one compressed symbol, based on the position indication information and the power indication information, wherein the at least one compressed symbol is generated based on modulation compression using an in-phase data (I-data) and a quadrature-phase data (Q-data), and wherein each of the I-data and the Q-data is represented by at least one bit determined based on modulation order. 7. The RU of claim 6 , wherein the position indication information comprises reMask which is set in a section header of the control information, wherein the power indication information comprises modCompScaler which is set in a section extender of the control information. 8. The RU of claim 7 , wherein the reMask is expressed by 12 bits, and wherein the modCompscaler is expressed by 15 bits. 9. The RU of claim 6 , wherein the wireless communication system comprises a communication system to which function split is applied, and wherein the RU allows support for the modulation compression. 10. The RU of claim 6 , wherein the control information further comprises position indication information indicating a position of a subcarrier at which a second subcarrier signal is transmitted in the PRB, and power indication information for indicating a transmit power of the second subcarrier signal, wherein the first subcarrier signal comprises one of a physical downlink shared channel (PDSCH), a physical downlink control channel (PDCCH), a demodulation reference signal (DM-RS) for the PDSCH, a DM-RS for the PDCCH, a channel state information-reference signal (CSI-RS), a physical broadcast channel (PBCH), a primary synchronization signal (PSS), or a secondary synchronization signal (SSS), and wherein the second subcarrier signal comprises another one of the PDSCH, the PDCCH, the DM-RS for the PDSCH, the DM-RS for the PDCCH, the CSI-RS, the PBCH, the PSS and the SSS. 11. A method performed by a digital unit (DU) in a wireless communication system, the method comprising: generating at least one compressed symbol based on modulation compression using an in-phase data (I-data) and a quadrature-phase data (Q-data), and wherein each of the I-data and the Q-data is represented by at least one bit determined based on modulation order; transmitting, to a radio unit (RU) through a fronthaul, control information including: position indication information for indicating a position of a first subcarrier signal transmitted in a physical resource block (PRB) to which the at least one compressed symbol is mapped, and power indication information for indicating a transmit power of the first subcarrier signal associated with a scaler value for the modulation compression; and transmitting the at least one compressed symbol to the RU.
Optimizing {the usage of the radio link}, e.g. header compression, information sizing {, discarding information (system modifying transmission characteristic according to link quality by modifying frame length H04L1/0007; dynamic adaptation of the packet size for flow control or congestion control H04L47/365)} · CPC title
by switching between different modulation schemes · CPC title
using bitmaps · CPC title
Indication of how sub-channels of the path are allocated · CPC title
Signalling for the administration of the divided path, e.g. signalling of configuration information · CPC title
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