H04W48/10

NETWORK-CONTROLLED REPEATER DEVICES, METHODS, AND NETWORKS INCLUDING SAME
20230239768 · 2023-07-27 ·

A repeater node of a telecommunications network wirelessly communicates with a parent node and another node. The repeater node comprises receiver circuitry, processor circuitry, and transmitter circuitry. The receiver circuitry is configured to receive a frame of information from the parent node. The processor circuitry is configured to include a customized control signal in the frame of information received from the parent node. The customized control signal is customized for the repeater node. The transmitter circuitry is configured to transmit the frame of information which includes the customized control signal to the other node which may be a wireless terminal.

METHOD AND APPARATUS FOR REQUESTING AND RECEIVING ASSISTANCE DATA ON POSITIONING REFERENCE SIGNAL IN MOBILE WIRELESS COMMUNICATION SYSTEM
20230239094 · 2023-07-27 ·

A method and apparatus for positioning in a mobile communication system are provided. Method for positioning includes receiving a System Information Block1(SIB1), acquiring a System Information (SI), transmitting a RequestAssistanceData and receiving a ProvideAssistanceData. The SI includes a second PRS data. The RequestAssistanceData includes a physical cell identity of PCell and the second identifier.

METHOD AND APPARATUS FOR REQUESTING AND RECEIVING ASSISTANCE DATA ON POSITIONING REFERENCE SIGNAL IN MOBILE WIRELESS COMMUNICATION SYSTEM
20230239094 · 2023-07-27 ·

A method and apparatus for positioning in a mobile communication system are provided. Method for positioning includes receiving a System Information Block1(SIB1), acquiring a System Information (SI), transmitting a RequestAssistanceData and receiving a ProvideAssistanceData. The SI includes a second PRS data. The RequestAssistanceData includes a physical cell identity of PCell and the second identifier.

COMMUNICATION APPARATUS, COMMUNICATION METHOD, AND STORAGE MEDIUM
20230007718 · 2023-01-05 ·

In a case where a Beacon frame is transmitted through a first frequency channel, and a communication apparatus and one of a multi-link communication non-supporting apparatus and a communication apparatus supporting multi-link communication establish connection through a second frequency channel while a multi-link communication supporting apparatus and the communication apparatus establish connection through a first frequency channel, a frequency channel to transmit the Beacon frame is switched from the first frequency channel to the second frequency channel.

Communicating on a shared channel in a wireless network

A user equipment (UE) may receive a broadcast channel that includes a bits indicating possible resources for a downlink shared channel being utilized for a signaling channel. The UE may monitor, based on the indicated possible resources, the signaling channel for signaling information for the UE.

Method and apparatus for wireless device synchronization in a beam-based communication system

Among other things, the method and apparatus examples herein provide a solution to the problems that arise regarding the need for a wireless device to achieve source synchronization in a beam-based system, where the wireless communication network does not define “cells” for connected-mode wireless devices. The problems relate to how a wireless device can re-synchronize with its source access node in a beam-based system that mainly relies on self-contained transmissions from transmission points in the network. As one example advantage, the contemplated methods and apparatus enable wireless devices to perform measurements to support mobility procedures even when no data transmissions are scheduled.

Discovering physical cell identifiers in wireless communications

Aspects of the present disclosure describe receiving, from at least one cell of a zone of multiple cells, a zone-specific signal related to the zone of multiple cells, wherein the zone of multiple cells operate using synchronized timing, acquiring, based on the zone-specific signal, a timing synchronization with a cell of the zone of multiple cells, and communicating with the cell based on the timing synchronization.

Discovering physical cell identifiers in wireless communications

Aspects of the present disclosure describe receiving, from at least one cell of a zone of multiple cells, a zone-specific signal related to the zone of multiple cells, wherein the zone of multiple cells operate using synchronized timing, acquiring, based on the zone-specific signal, a timing synchronization with a cell of the zone of multiple cells, and communicating with the cell based on the timing synchronization.

Method and apparatus for sending and receiving system information, and user equipment and base station

A method for sending system information includes: receiving a system information (SI) request sent by at least one user equipment (UE); determining, according to the received SI request, at least one, in the SI requested by each UE, of a first SI set sent in a unicast manner and a second SI set sent in a broadcast manner; and returning, to each UE, a response message of the SI request, wherein the response message carries at least one of the first SI set of the corresponding UE and indication information for instructing the corresponding UE to receive the second SI set.

Method and apparatus for sending and receiving system information, and user equipment and base station

A method for sending system information includes: receiving a system information (SI) request sent by at least one user equipment (UE); determining, according to the received SI request, at least one, in the SI requested by each UE, of a first SI set sent in a unicast manner and a second SI set sent in a broadcast manner; and returning, to each UE, a response message of the SI request, wherein the response message carries at least one of the first SI set of the corresponding UE and indication information for instructing the corresponding UE to receive the second SI set.