H04L1/18

FREQUENCY HOPPING OR MULTI-BEAM TRANSMISSIONS FOR PHYSICAL UPLINK CHANNEL REPETITION ACROSS MULTIPLE COMPONENT CARRIERS
20230052221 · 2023-02-16 ·

Various aspects of the present disclosure generally relate to wireless communication. In some aspects, a user equipment (UE) may receive an indication of a configuration for frequency hopping across repetitions of a physical uplink control channel (PUCCH) transmitted via a plurality of component carriers, wherein the plurality of component carriers includes at least a first component carrier and a second component carrier. The UE may transmit the repetitions of the PUCCH in accordance with the configuration. Numerous other aspects are described.

METHOD BY WHICH TERMINAL TRANSMITS DATA IN UNLICENSED BAND, AND APPARATUS USING METHOD
20230048548 · 2023-02-16 ·

A method by which a terminal transmits data in an unlicensed band, and an apparatus using the method are provided. The method comprises: transmitting data to a base station through a physical uplink shared channel (PUSCH) in the unlicensed band; and receiving, from the base station, acknowledgement/negative acknowledgement (ACK/NACK) information about the data in the unlicensed band, wherein the terminal receives, from the base station, timeline information notifying of a time relationship between the PUSCH transmission time point and the ACK/NACK information reception time point.

SYSTEM AND A METHOD FOR CONTROLLING TIMING OF PROCESSING NETWORK DATA
20230048672 · 2023-02-16 ·

Embodiments of the invention relate to methods and systems for processing network traffic data units. The methods and systems may include functionality for generating a first network traffic data unit comprising an indication that the first network traffic unit should be delayed for a time before re-transmission to a client device; and transmitting the first network traffic data unit to a first edge device.

SYSTEM AND A METHOD FOR CONTROLLING TIMING OF PROCESSING NETWORK DATA
20230048672 · 2023-02-16 ·

Embodiments of the invention relate to methods and systems for processing network traffic data units. The methods and systems may include functionality for generating a first network traffic data unit comprising an indication that the first network traffic unit should be delayed for a time before re-transmission to a client device; and transmitting the first network traffic data unit to a first edge device.

Hybrid Automatic Repeat Request Feedback with Control Channel Repetition

A wireless device may receive an indication that repetition of downlink control information (DCI) is scheduled via a first monitoring occasion and a second monitoring occasion. The wireless device may transmit one or more feedback information bits via an uplink resource. The one or more feedback information bits may be based on a downlink assignment index (DAI) corresponding to the earlier of the first monitoring occasion and the second monitoring occasion.

TELECOMMUNICATIONS APPARATUS AND METHODS

A method of operating a terminal device in a wireless telecommunications system, the method comprising: attempting to decode a transmission of data to the terminal device; determining whether or not the data was successfully decoded; and transmitting acknowledgement signalling indicating whether or not the data was successfully decoded on radio resources that are determined by taking account of whether or not the data was successfully decoded.

TERMINAL, RADIO COMMUNICATION METHOD, AND BASE STATION

A terminal according to an aspect of the present disclosure includes: a reception section that receives downlink control information for triggering feedback of a one-shot HARQ-ACK; and a control section that controls feedback of HARQ-ACKs each corresponding to one of a plurality of service types or HARQ-ACKs having different priorities by using different codebooks in a case where the feedback of the HARQ-ACK is performed on the basis of the downlink information.

METHOD AND DEVICE IN A NODE USED FOR WIRELESS COMMUNICATION

Disclosure provides a method and device in a node for wireless communications. A first receiver, receives a first signaling; and a first transmitter, transmits a first signal in a target time-frequency-resource block, and the first signal carries a second bit block; herein, the first signaling is used to determine a first bit block; the first bit block comprises a second-type HARQ-ACK; the first bit block is used to generate the second bit block; the first time-frequency-resource block and the second time-frequency-resource block are respectively reserved for different bit blocks; a number of resources used to transmit a first-type HARQ-ACK in the first time-frequency-resource block is used to determine whether the target time-frequency-resource block is the first time-frequency-resource block or the second time-frequency-resource block; the first-type HARQ-ACK corresponds to a first index; the second-type HARQ-ACK corresponds to a second index; the first signaling indicates the second index.

TRANSMISSION AND RECEPTION METHOD AND APPARATUS FOR REDUCING TRANSMISSION TIME INTERVAL IN WIRELESS CELLULAR COMMUNICATION SYSTEM
20230053253 · 2023-02-16 ·

Methods and apparatuses for signal transmission and reception are provided for a wireless communication system. Information for configuring a plurality of physical uplink control channel (PUCCH) resources is transmitted to a terminal. Downlink control information (DCI) is transmitted to the terminal on a physical downlink control channel (PDCCH). The DCI includes a resource indicator for indicating a PUCCH resource among the plurality of PUCCH resources. Uplink control information (UCI) is received from the terminal on the PUCCH resource indicated by the resource indicator.

TRANSMISSION AND RECEPTION METHOD AND APPARATUS FOR REDUCING TRANSMISSION TIME INTERVAL IN WIRELESS CELLULAR COMMUNICATION SYSTEM
20230053253 · 2023-02-16 ·

Methods and apparatuses for signal transmission and reception are provided for a wireless communication system. Information for configuring a plurality of physical uplink control channel (PUCCH) resources is transmitted to a terminal. Downlink control information (DCI) is transmitted to the terminal on a physical downlink control channel (PDCCH). The DCI includes a resource indicator for indicating a PUCCH resource among the plurality of PUCCH resources. Uplink control information (UCI) is received from the terminal on the PUCCH resource indicated by the resource indicator.