5G NR and 4G LTE Radio Protocols - From Theory to Practice

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5G NR and 4G LTE Radio Protocols - From Theory to Practice (Size: 471.6 MB)
  Bonus Resources.txt 102.4 B
  Get Bonus Downloads Here.url 204.8 B
  ~Get Your Files Here !
  01 - Introduction
  01 - Introduction.mp4 3.8 MB
  01 - Introduction.srt 1.2 KB
  02 - 1. Understanding 4G and 5G Radio Access Technology (RAT)
  01 - The mobile evolution From 2G to 6G.mp4 14.3 MB
  01 - The mobile evolution From 2G to 6G.srt 5.5 KB
  02 - Building blocks of a telecom network.mp4 11.4 MB
  02 - Building blocks of a telecom network.srt 5.6 KB
  03 - 2. 5G Physical Layer (Layer 1) Signals and Simulations
  01 - 5G NR architecture A new paradigm.mp4 11.2 MB
  01 - 5G NR architecture A new paradigm.srt 7.9 KB
  02 - 5G protocol stack Each layer explained.mp4 14.3 MB
  02 - 5G protocol stack Each layer explained.srt 7.8 KB
  03 - 5G spectrum The sub-6 GHz and mmWave revolution.mp4 17.1 MB
  03 - 5G spectrum The sub-6 GHz and mmWave revolution.srt 7.6 KB
  04 - 3. 5G Layer 2 Advanced Data Handling
  01 - 5G layer 2 data flow.mp4 4.8 MB
  01 - 5G layer 2 data flow.srt 3.8 KB
  02 - 5G RLC Reliable data transfer.mp4 9.8 MB
  02 - 5G RLC Reliable data transfer.srt 5.4 KB
  03 - 5G MAC Flexible scheduling.mp4 6.3 MB
  03 - 5G MAC Flexible scheduling.srt 4.6 KB
  04 - 5G PDCP Security and efficiency.mp4 7.7 MB
  04 - 5G PDCP Security and efficiency.srt 5.9 KB
  05 - 4. 5G Layer 3 and RRC
  01 - 5G RRC Radio resource control.mp4 6.2 MB
  01 - 5G RRC Radio resource control.srt 4.5 KB
  02 - 5G RRC states Connected, inactive, and idle.mp4 9.2 MB
  02 - 5G RRC states Connected, inactive, and idle.srt 5.8 KB
  06 - 5. 4G Physical Layer (Layer 1) Signals and Simulations
  01 - 4G LTE protocol stack overview.mp4 6.8 MB
  01 - 4G LTE protocol stack overview.srt 5 KB
  02 - The resource grid Time and frequency dimensions.mp4 2.4 MB
  02 - The resource grid Time and frequency dimensions.srt 2 KB
  03 - 4G frame structure Organizing radio resources.mp4 17.4 MB
  03 - 4G frame structure Organizing radio resources.srt 10.2 KB
  04 - Cyclic prefix in 4G Normal vs. extended.mp4 7.6 MB
  04 - Cyclic prefix in 4G Normal vs. extended.srt 4.2 KB
  05 - 4G physical layer Layer 1 overview.mp4 9.9 MB
  05 - 4G physical layer Layer 1 overview.srt 6.7 KB
  06 - Simulation 4G physical layer.mp4 6 MB
  06 - Simulation 4G physical layer.srt 5.1 KB
  07 - 4G physical layer Signals vs. channels.mp4 2 MB
  07 - 4G physical layer Signals vs. channels.srt 1.6 KB
  07 - 6. 4G Layer 2 MAC, RLC, and Scheduling
  01 - 4G layer 2 data flow and protocol stack.mp4 12.7 MB
  01 - 4G layer 2 data flow and protocol stack.srt 10.4 KB
  02 - 4G RLC layer Segmentation and ARQ.mp4 6 MB
  02 - 4G RLC layer Segmentation and ARQ.srt 4.8 KB
  03 - 4G RLC ARQ schemes Error correction in action.mp4 6.1 MB
  03 - 4G RLC ARQ schemes Error correction in action.srt 5.3 KB
  04 - 4G MAC layer Scheduling and priority handling.mp4 6.2 MB
  04 - 4G MAC layer Scheduling and priority handling.srt 5.5 KB
  05 - The scheduler Resource allocation strategies (4G MAC layer).mp4 7.5 MB
  05 - The scheduler Resource allocation strategies (4G MAC layer).srt 4.9 KB
  06 - Dynamic resource allocation Real-time adaptations.mp4 7.7 MB
  06 - Dynamic resource allocation Real-time adaptations.srt 5.1 KB
  08 - 7. 4G Layer 3 RRC and System Information
  01 - 4G RRC layer Radio resource control.mp4 10.7 MB
  01 - 4G RRC layer Radio resource control.srt 9.5 KB
  02 - 4G RRC states Idle vs. connected mode.mp4 10.8 MB
  02 - 4G RRC states Idle vs. connected mode.srt 9 KB
  03 - Simulation RRC idle and connected mode.mp4 6.7 MB
  03 - Simulation RRC idle and connected mode.srt 3.4 KB
  04 - 4G system information blocks MIB and SIBs overview.mp4 6 MB
  04 - 4G system information blocks MIB and SIBs overview.srt 5.6 KB
  05 - Essential 4G SIBs SIB1 and SIB2 simulation.mp4 6.8 MB
  05 - Essential 4G SIBs SIB1 and SIB2 simulation.srt 4.1 KB
  06 - Simulation 4G RRC reconfiguration procedure.mp4 8.5 MB
  06 - Simulation 4G RRC reconfiguration procedure.srt 5 KB
  09 - Conclusion
  01 - Conclusion.mp4 6.1 MB
  01 - Conclusion.srt 1.5 KB
  08 - 4G downlink control (PDCCH) DCI formats overview.mp4 4.1 MB
  08 - 4G downlink control (PDCCH) DCI formats overview.srt 3.1 KB
  09 - Call flow Understanding DCI formats and UE identifiers.mp4 6.6 MB
  09 - Call flow Understanding DCI formats and UE identifiers.srt 4 KB
  10 - Simulation Configuring and decoding the PDCCH.mp4 6.5 MB
  10 - Simulation Configuring and decoding the PDCCH.srt 3.9 KB
  11 - 4G PDSCH The downlink data workhorse.mp4 6.7 MB
  11 - 4G PDSCH The downlink data workhorse.srt 4.5 KB
  12 - Simulation Analyzing PDSCH performance.mp4 6.8 MB
  12 - Simulation Analyzing PDSCH performance.srt 4.1 KB
  13 - 4G PDSCH resource allocation calculation.mp4 8.7 MB
  13 - 4G PDSCH resource allocation calculation.srt 4.8 KB
  14 - Calculating 4G PDSCH throughput and data rates.mp4 7 MB
  14 - Calculating 4G PDSCH throughput and data rates.srt 4.9 KB
  15 - 4G uplink control PUCCH operations.mp4 5.5 MB
  15 - 4G uplink control PUCCH operations.srt 4 KB
  05 - 5G SDAP QoS handling and flow management.mp4 6.9 MB
  05 - 5G SDAP QoS handling and flow management.srt 4.5 KB
  04 - 5G flexible frame structure Adapting to diverse needs.mp4 7.7 MB
  04 - 5G flexible frame structure Adapting to diverse needs.srt 5.6 KB
  05 - 5G downlink signals and channels.mp4 10.7 MB
  05 - 5G downlink signals and channels.srt 7.1 KB
  06 - 5G initial access How devices connect to the network.mp4 14.1 MB
  06 - 5G initial access How devices connect to the network.srt 7.4 KB
  07 - 5G PDCCH Enhanced control channel.mp4 11.3 MB
  07 - 5G PDCCH Enhanced control channel.srt 6.4 KB
  08 - Simulation 5G PDCCH configuration and analysis.mp4 6.4 MB
  08 - Simulation 5G PDCCH configuration and analysis.srt 4.6 KB
  09 - 5G PDSCH High-throughput data channel.mp4 3.8 MB
  09 - 5G PDSCH High-throughput data channel.srt 3.8 KB
  10 - Simulation 5G PDSCH performance measurement.mp4 6.3 MB
  10 - Simulation 5G PDSCH performance measurement.srt 4.6 KB
  11 - 5G uplink control PUCCH enhancements.mp4 11.4 MB
  11 - 5G uplink control PUCCH enhancements.srt 5.5 KB
  12 - 5G uplink shared channel PUSCH.mp4 8.6 MB
  12 - 5G uplink shared channel PUSCH.srt 5 KB
  13 - Simulation 5G uplink channels (PUCCH and PUSCH).mp4 5.7 MB
  13 - Simulation 5G uplink channels (PUCCH and PUSCH).srt 4.6 KB
  03 - Understanding the radio access network (RAN).mp4 9.5 MB
  03 - Understanding the radio access network (RAN).srt 4.5 KB
  04 - Radio spectrum basics Bands and properties.mp4 9.8 MB
  04 - Radio spectrum basics Bands and properties.srt 6.1 KB
  05 - Duplexing methods FDD vs. TDD explained.mp4 6.5 MB
  05 - Duplexing methods FDD vs. TDD explained.srt 4.9 KB
  06 - Digital modulation fundamentals.mp4 6 MB
  06 - Digital modulation fundamentals.srt 4.5 KB
  07 - Multiple access schemes OFDMA deep dive.mp4 7.6 MB
  07 - Multiple access schemes OFDMA deep dive.srt 4.4 KB
  08 - Antenna systems From single element to arrays.mp4 10.7 MB
  08 - Antenna systems From single element to arrays.srt 6.5 KB
  09 - MIMO technology Spatial multiplexing and diversity.mp4 6.5 MB
  09 - MIMO technology Spatial multiplexing and diversity.srt 3.9 KB

Description


5G NR and 4G LTE Radio Protocols: From Theory to Practice

https://WebToolTip.com

Released 12/2025
With Rahul Kaundal, Itelcotech
MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch
Skill level: Intermediate | Genre: eLearning | Language: English + subtitle | Duration: 2h 59m 42s | Size: 472 MB

Develop a comprehensive end-to-end understanding of 4G and 5G radio access networks, from key protocols to physical layer procedures.

Course details
This course offers a deep dive into the core principles of modern mobile networks, from 4G LTE to the cutting-edge world of 5G and beyond. Explore the fundamentals of radio access—including spectrum properties, duplexing, modulation, and multiple access schemes—before tracing the architectural and technological evolution from the mature 4G LTE standard to the revolutionary design of 5G New Radio (NR). Instructor Rahul Kaundal provides a detailed overview of both 4G and 5G systems, deconstructing the protocol stacks, from the physical layer signals and channels up to the data link and control layers. An ideal fit for engineers, technical managers, and telecom professionals who need to build a rigorous, practical understanding of how modern networks function, this course equips you with the skills to analyze network performance, troubleshoot complex signaling procedures, and navigate the underlying engineering complexities that define current and future mobile communications.This course was created by Itelcotech. We are pleased to host this training in our library.

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