H04B7/066

Simplified detection for spatial modulation and space-time block coding with antenna selection

Methods and systems that can enable antenna selection (AS) and data bits in transmitted spatially modulated (SM) streams to be detected at a receiver using different detection methods. In example embodiments, encoding for an AS stream is done separately at a transmitter than encoding for data streams, enabling a receiver to use one type of detection for AS bits and a reduced complexity type of MIMO detection for the data bits.

SPARSE REFERENCE SIGNAL-RELATED SIGNALING APPARATUS AND METHODS

Sparse reference signal-related signaling, for a wireless channel that is associated with multiple antenna ports, is communicated with a User Equipment (UE). The sparse reference signal-related signaling is consistent with a sparse signaling pattern. In an embodiment, the sparse signaling pattern includes reference signal-related signaling associated with each of the antenna ports, and has been determined based on previous reference signal-related signaling previously communicated with the UE or another UE. In another embodiment, the sparse reference signal-related signaling is consistent with a varying sparse signaling pattern that is based on previous reference signal-related signaling previously communicated with the UE or another UE.

COMMUNICATION METHOD AND COMMUNICATION APPARATUS
20230261816 · 2023-08-17 ·

A communication method of the present disclosure comprises transmitting a sounding frame comprising a training signal; and receiving a first feedback frame from a communication partner device, the first feedback frame comprising first beamforming feedback information, wherein the first feedback frame is transmitted together with at least one second feedback frame by multiuser transmission.

Apparatus and method for beam reporting, beam indication and scheduling of data transmission during beam management
11728868 · 2023-08-15 · ·

Embodiments of the present disclosure describe apparatuses, methods and machine-readable storage medium for beam reporting, beam indication and scheduling of data transmission during beam management.

Group-based beam reporting using phase continuity

A UE may determine that two or more resources on two or more beams from a base station have phase continuity. The UE may determine, based on the two or more resources on the two or more beams having the phase continuity, a joint channel information associated with the two or more beams using individual measurements respectively corresponding to the two or more beams. The UE may then transmit, to the base station, a group-based beam report including the joint channel information. The base station may provide the UE with an indication that the two or more resources on the two or more beams from the base station have phase continuity. The base station may receive the group-based beam report from the UE based on the indication, and the base station may configure communication with the UE on a joint channel based on the group-based beam report.

High-resolution CSI reporting based on unequal bit allocation in advanced wireless communication systems

Methods and apparatuses for reporting a precoding matrix indicator (PMI). A user equipment (UE) includes a processor configured to generate a report for a PMI. The report includes (i) a wideband amplitude coefficient indicator that is common for a plurality of subbands configured for reporting and (ii) a subband amplitude coefficient indicator and a subband phase coefficient indicator for each of the subbands. The UE further includes a transceiver operably connected to the processor. The transceiver configured to transmit the generated report for the PMI to a base station.

Reporting Of Best Wideband CQI In Mobile Communications
20220124536 · 2022-04-21 ·

Various solutions pertaining to reporting of best wideband (WB) channel quality indicator (CQI) in mobile communications are described. An apparatus implemented in a user equipment (UE) calculates a value of a modified wideband channel quality indicator (WB-CQI) with respect to a wideband based on CQI values of a subset of subbands of a plurality of subbands in the wideband. The apparatus then reports the modified WB-CQI to a network. In calculating the value of the WB-CQI, the apparatus excludes one or more subbands from the plurality of subbands to result in the subset of subbands used in calculating the value of the WB-CQI. A respective CQI value of each of the excluded one or more subbands is lower than a respective CQI value of each of the subset of subbands.

Multi-Cell Signals in OFDM Wireless Networks
20210360457 · 2021-11-18 ·

Wireless devices may receive channel state information (CSI) measurement resources for a plurality of cells, including cells of a first transmission point and cells of a second transmission point. The wireless device may measure CSI for each cell, and may quantize the measured CSI jointly across the cells. The wireless device may send the jointly quantized CSI to a base station, and the jointly quantized CSI may be used in communications via the first transmission point and the second transmission point.

METHOD AND SYSTEM FOR ACQUIRING HIGH FREQUENCY CARRIER IN A WIRELESS COMMUNICATION NETWORK
20210360559 · 2021-11-18 ·

A method and system for acquiring mmWave carrier in a wireless communication network is disclosed. In one embodiment, an MS acquires a low frequency carrier and then acquires the high frequency carrier. Since the low frequency carrier and the high frequency carrier are transmitted by same B S, the BS provides assistance information on the acquired low frequency carrier to the MS to acquire a synchronization signal which is transmitted on a high frequency carrier using beamforming. The assistance information includes synchronization signal beam time slots, synchronization signal beams which the MS needs to search, beam ID and so on. Based on the assistance information, the MS monitors the high frequency carrier to search and acquire the synchronization beam signal transmitted on the high frequency carrier. The MS determines the beam ID of the received synchronization beam signal and reports to the BS on the low frequency carrier.

Precoder resource group allocation methods for MIMO communication

Aspects of the present disclosure disclose various methods for grouping network resources into precoder resource groups (PRGs) for precoding in MIMO communication. A user equipment (UE) may select a common precoder that may not be restricted to a codebook for precoding the resources in the same PRG. These resource grouping methods provide the UE with the flexibility to select a precoder that is well suited to the channel or bandwidth. Moreover, the base station may reduce downlink signaling because it does not need to signal the precoder choice to the UE. In some examples, the base station may receive PRG based channel state information feedback that facilitates DL precoding. Other aspects, embodiments, and features are also claimed and described.