
5G NR CORESET Explained: Function and Parameters
Learn about 5G NR CORESET, the basic resource allocation unit, its parameters like RE, REG, CCE, and its role in PDCCH transmission.
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Learn about 5G NR CORESET, the basic resource allocation unit, its parameters like RE, REG, CCE, and its role in PDCCH transmission.
Explore 5G NR deployment scenarios: Non-Standalone (NSA), Standalone (SA), Homogeneous, and Heterogeneous modes. Understand their characteristics and differences.
Overview of 5G NR event reporting as defined by 3GPP, covering events A1 through A6 and their impact on measurement reports.
Explore the 5G NR frequency bands, focusing on FR1 (450-6000 MHz) and FR2 (24250-52600 MHz). Includes tables detailing band specifications and duplex modes like FDD and TDD.
Learn about the 5G NR GSCN (Global Synchronization Channel Number), its parameters, and its role in identifying the center frequency for SS/PBCH blocks.
Explore 5G NR handover types, including inter gNB and intra RAN handover (C-Plane Handling) as defined in 3GPP TS 38.300.
Learn about the different identifiers used in 5G New Radio (NR) for user equipment (UE) and network infrastructure, crucial for connection management and mobility.
Explore 5G NR MCS (Modulation and Coding Scheme) and TBS (Transport Block Size) tables as defined in 3GPP TS 38.214 for 5G New Radio technology.
Explore 5G NR mini-slots: their function, benefits in reducing latency, and differences from regular slots in the 5G NR frame structure.
An overview of the Xn, NG, E1, F1, and F2 interfaces in 5G NR network architecture, their functions, and locations within the 5G RAN and 5GC based on 3GPP standards.
Explore the functions of 5G NR network nodes, including AMF, UPF, SMF, PCF, UDM, DN, AUSF, and AF, as defined in 3GPP specifications.
An overview of the 5G NR physical layer based on 3GPP standards, detailing PDSCH and PUSCH channel processing.
Explore the 5G NR PRACH, covering its role in uplink timing adjustment, preamble formats, and physical layer processing using Zadoff-Chu sequences.
Explore PRB utilization and resource allocation efficiency in 5G NR, key metrics for managing radio resources and optimizing network performance. Learn how to achieve high data rates and low latency.
Explanation of 5G NR Quasi Co-Location (QCL) types including Type-A, Type-B, Type-C, and Type-D, and their associated channel parameters like Doppler shift, delay spread, and spatial Rx parameters.
Explore 5G NR QoS, its architecture as per the 3GPP standard, and the advantages it offers for mission-critical communication, including prioritization and emergency service availability.
An overview of 5G NR reference signals, including DMRS, PT-RS, CSI-RS, and SRS, covering their functions, contents, and mapping in downlink and uplink communication.
Learn about 5G NR RNTI, its usage as UE and network identifiers, and its roles within the 5G NR system for radio resource management and device identification.
A comprehensive explanation of 5G NR RSRP, RSRQ, and SINR measurements, including SS-RSRP, CSI-RSRP, SS-RSRQ, CSI-RSRQ, SS-SINR, and CSI-SINR definitions.
Explores common 5G NR SDAP layer test failures, their root causes, and effective solutions, including QoS, PDU loss, and reordering issues.
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