Abstract:
Provided herein are apparatus and method for user equipment (UE) panel selection. The disclosure provides an apparatus for a UE, comprising: a radio frequency (RF) interface to receive one or more reference signal resources from a next generation NodeB (gNB); and processor circuitry coupled with the RF interface, the processor circuitry to: determine a beam quality for each of the one or more reference signal resources received at each panel of the UE; and report beam information to the gNB, the beam information to indicate the beam quality of each of the one or more reference signal resources and corresponding panel for receiving each of the one or more reference signal resources. Other embodiments may also be disclosed and claimed.
Abstract:
Examples may include techniques for a identifying physical hybrid automatic request (HARQ) indicator channel (PHICH) resources. A PHICH resource along with one or more additional PHICH may be identified for use to enhance coverage for user equipment to receive positive acknowledgements (ACKs) or negative acknowledgement (NAKs) from an evolved Node B (eNB). An ACK/NAK may be sent to the UE by the eNB responsive to receiving data over a physical uplink shared channel (PUSCH) established with the UE. Both the UE and the eNB may operate in compliance with one or more 3rd Generation Partnership Project (3GPP) Long Term Evolution (LTE) standards.
Abstract:
This disclosure describes systems, methods, and devices for physical uplink shared channel (PUSCH) repetition for half duplex frequency division duplex (HD-FDD) wireless operations. A user equipment (UE) device may detect a use of HD-FDD operations; identify an available time slot during which to transmit a PUSCH repetition for the HD-FDD operations; and encode the PUSCH repetition to be transmitted during the available time slot.
Abstract:
Various embodiments herein provide techniques related to a physical downlink control channel (PDCCH) that includes a single downlink control information (DCI). The single DCI may be related to a first set of one or more physical shared channels on a first component carrier (CC) and a second set of two or more physical shared channels on a second component carrier (CC). Other embodiments may be described and/or claimed.
Abstract:
Embodiments herein provide techniques for transmission of a physical uplink control channel (PUCCH) in a wireless cellular network. For example, transmission schemes are provided for sequence-based transmission of a PUCCH and/or to improve PUCCH coverage. User equipment (UE) may: determine uplink control information (DCI) payload information for the PUCCH with a PUCCH format 1; determine a sequence for transmission of the PUCCH based on the UCI payload information; and map the determined sequence to allocated resources for the PUCCH format 1 for transmission.
Abstract:
Various embodiments herein provide techniques to determine valid and invalid physical downlink shared channels (PDSCHs) and/or physical uplink shared channels (PUSCHs) with multi-PDSCH and/or PUSCH scheduling. Embodiments further relate to determination of transmission configuration indicator (TCI) state and/or quasi co-location (QCL) for multi-PDSCH and/or PUSCH scheduling. Other embodiments may be described and claimed.
Abstract:
Various embodiments herein provide techniques related to identifying, when a user equipment (UE) is in a fifth generation (5G) or new radio (NR) cellular network, a data that is to be transmitted in a transport block over multiple slots (TBoMS) in a configured grant (CG) physical uplink shared channel (PUSCH); identifying, based on an indication received from a base station, a number of repetitions for transmission of the PUSCH; and transmitting, based on the indication, the TBoMS in the PUSCH over the multiple slots. Other embodiments may be described and/or claimed.
Abstract:
Various embodiments herein provide techniques for uplink transport block transmission over multiple slots, e.g. using bit interleaving and/or rate matching. Other embodiments may be described and claimed.
Abstract:
Provided herein are mechanisms on response of pre-allocated resource based PUSCH transmission. The disclosure provides an apparatus including processor circuitry. The processor circuitry is to: encode data, for transmission to an access node (AN) over a pre-allocated uplink (UL) resource (PUR) based physical uplink shared channel (PUSCH); start a timer once the data is transmitted; and monitor, based on the timer, a physical downlink control channel (PDCCH) to obtain a response of the AN to the transmission of the data. Other embodiments may also be disclosed and claimed.
Abstract:
The disclosure provides mechanisms for transmission of multiple DCIs. An apparatus for an AN includes RF interface circuitry; and processing circuitry coupled with the interface circuitry and configured to: multiplex one or more PDCCHs carrying DCI for a UE in a TDM manner; perform a resource mapping to map the multiplexed one or more PDCCHs into frequency and time resources in a CORESET; and provide the multiplexed one or more PDCCHs to the RF interface circuitry for transmission to the UE with the frequency and time resources in the CORESET.