
Master 5G radio optimization for NSA and SA deployments, covering 5G NDC optimization, secondary cell addition, signaling flows, handover, mobility, and KPIs optimization for coverage and throughput.
Explore 5G basics, including the use cases eMBB, mMTC, URLLC, and performance targets up to 20 Gbps and sub-1 ms latency, plus deployment options and spectrum bands.
Explore non-standalone 5g deployment option 3x, where a 4g master node carries signaling and traffic while a 5g secondary node carries traffic only, with devices connecting to lte first.
Learn how to add a 5G base station as a secondary node in NSA option 3x, with NDC on 4G, and manage x2 signaling, P1 thresholds, and time to trigger.
Explore the signaling flow for 5g secondary cell addition, from rc signaling and p1 threshold measurements to x2-based capability exchange, data forwarding, and traffic redirection between 4g and 5g.
Understand how to add a 5G secondary cell and use blind or measurement-based configurations, RC reconfiguration messages, and P1 thresholds with measurement gaps to trigger 5G measurement reports.
Explain 5G radio optimization through blind primary-secondary cell addition and measurement-based approaches, detailing P1 and B1 thresholds, time to trigger, and measurement gap strategies.
Learn how buffer based secondary node addition ensures traffic exists before adding 5G by meeting a buffer threshold and triggering a P1 measurement gap, while keeping S2 RLC traffic low.
Learn when to release a 5G secondary cell in a 4G/5G setup, using A2 critical thresholds and signaling flow to forward traffic to 4G when coverage is poor.
This lecture reviews 4g mobility events for intra and inter frequency handovers, including s3, a2/a1 measurement gaps, a4 and b1 events, and thresholds to avoid ping-pong in 4g/5g.
Understand 5G mobility in non-standalone networks by examining 4G MeNB handover with PSCell change, master and target InnoDB roles, and S3/A4/A5 triggers.
Explore 4g meNB handover without pscell change while maintaining a 5g connection through inter-site eDC with an anchor meNB and a coordinated signaling flow.
Describe NSA handover in 5G, covering 4G/5G cell changes, signaling between master eNB and 5G nodes, and traffic redirection with context release after handover.
Tune A3, A4, A5, thresholds, offset, hysteresis, and trigger time for handover optimization; configure ANR and X2/Xn for 4G-5G and stand alone with RSP from CSI.
Explore the signaling flow for a standalone 5G handover between gNodeB nodes, covering measurement reports, admission control, handover request and acknowledge, handover command, and state transfer over the x2 interface.
Master buffer based secondary node addition for 5G NR mobility, ensuring traffic threshold and buffer conditions trigger a measurement gap and P1 checks to improve 5G accessibility without delaying deployment.
Explore coverage optimization as a key 5G KPI, influenced by operating bands and propagation. Learn how active antennas, beamforming, and neighbor definitions extend 5G coverage.
Apply the accessibility KPI formula to optimize 5g performance, tracking secondary gnodeB addition requests through reconfiguration to completion and measuring the success rate.
Study handover success rate as a mobility KPI for 5G networks. Explore factors like missing neighbors, PCI conflicts, ANR tuning, and contention free access to improve handover reliability and throughput.
This lecture explains retainability optimization in 5G NSA option three X, detailing how 4G/5G co-location and NDC enable a 5G base station addition, threshold-based P1 events, and time-to-trigger signaling.
Course Outline :
- 5G New Radio Basics revision
- 5G Deployment options
- Migration path from NSA to SA
- NSA Sgnb addation
- NSA Optimizaiton paramters
- Data split Optimization
- NSA Voice Options
- Sgnb Measurment Types
- Multi Carrier Strategy
- ENDC Mobility Trigger & Anchor strategy
- 5G Connected Mode Mobility
- SA Optimization
- 5G & 4G performance impact
- protocol stack
- 5G Radio link supervision
- Coverage Optimizaiton
- Accessability Optimizaiton
- Retainability Optimizaiton
- Mobility Optimizaiton
- Throughput Optimizaiton
Description:
Unlock the potential of 5G networks with Deep investigation on 5G Radio Optimization. Designed for engineers, technical professionals, and enthusiasts, this course dives into key concepts, tools, and methodologies for enhancing 5G network performance.
You’ll learn:
The fundamentals of 5G New Radio (NR) architecture and key technologies like beamforming and massive MIMO.
How to analyze and optimize Key Performance Indicators (KPIs) to achieve superior network quality.
Strategies for handling challenges in Non-Standalone (NSA) and Standalone (SA) deployments.
Advanced troubleshooting techniques and the use of optimization tools for maximizing network efficiency.
Strategies for handling challenges in Non-Standalone (NSA) and Standalone (SA) deployments.
With hands-on examples and practical insights, this course will prepare you to tackle real-world optimization challenges, enabling you to deliver unmatched user experiences in 5G networks.
Who Should Enroll:
This course is ideal for telecommunications engineers, network planners, and anyone looking to enhance their knowledge of 5G radio network optimization.
Who Should Take This Course?
This course is ideal for:
Telecommunications engineers and network optimization specialists seeking to advance their knowledge of 5G.
Network planners and RF engineers involved in deployment and performance tuning.
Professionals transitioning from 4G LTE to 5G technologies.
Enthusiasts looking to deepen their understanding of 5G radio systems.
please note that Course is for Arabic Speaker .