5G New Radio (NR) Design and Planning - Coverage, Capacity, and Throughput

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5G New Radio (NR) Design and Planning - Coverage, Capacity, and Throughput (Size: 593 MB)
  Bonus Resources.txt 102.4 B
  Get Bonus Downloads Here.url 204.8 B
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  01. Introduction
  01. Introduction.mp4 4.5 MB
  01. Introduction.srt 1.7 KB
  02. 1. Introduction to 5G Systems
  01. Evolution from 4G to 5G The drivers for change.mp4 14.5 MB
  01. Evolution from 4G to 5G The drivers for change.srt 5.5 KB
  02. What is 5G Key capabilities and use cases.mp4 9 MB
  02. What is 5G Key capabilities and use cases.srt 1.8 KB
  03. 2. 5G NR Fundamentals
  01. Flexible numerology and frame structure.mp4 7.7 MB
  01. Flexible numerology and frame structure.srt 5.7 KB
  02. The resource grid RE, RB, and bandwidth parts (BWP).mp4 7.1 MB
  02. The resource grid RE, RB, and bandwidth parts (BWP).srt 7.3 KB
  03. Multiple access OFDMA in 5G NR.mp4 7.5 MB
  03. Multiple access OFDMA in 5G NR.srt 4.6 KB
  04. 3. Initial Access and RACH Preambles
  01. High-level 5G system architecture.mp4 12.2 MB
  01. High-level 5G system architecture.srt 7 KB
  02. 5G SA initial access and registration procedure.mp4 14.2 MB
  02. 5G SA initial access and registration procedure.srt 7.7 KB
  03. The synchronization signal block (SSB).mp4 5 MB
  03. The synchronization signal block (SSB).srt 4.1 KB
  04. Random access channel (RACH) procedure.mp4 7 MB
  04. Random access channel (RACH) procedure.srt 3.5 KB
  05. 4. Radio Wave Propagation and Challenges
  01. Key radio signal measurements (RSRP, RSSI, SINR, RSRQ).mp4 12.7 MB
  01. Key radio signal measurements (RSRP, RSSI, SINR, RSRQ).srt 9.5 KB
  02. S‑RSRP (synchronization signal reference signal received power).mp4 10.8 MB
  02. S‑RSRP (synchronization signal reference signal received power).srt 7.2 KB
  03. SS‑RSSI (synchronization signal received signal strength indicator).mp4 5.3 MB
  03. SS‑RSSI (synchronization signal received signal strength indicator).srt 3.7 KB
  04. SS‑RSRQ (synchronization signal reference signal received quality).mp4 6.1 MB
  04. SS‑RSRQ (synchronization signal reference signal received quality).srt 4 KB
  05. SS‑SINR (synchronization signal signal-to-interference-plus-noise ratio).mp4 7.6 MB
  05. SS‑SINR (synchronization signal signal-to-interference-plus-noise ratio).srt 4.1 KB
  06. 5. MIMO, Beamforming, and Antenna Systems
  01. Antenna fundamentals and arrays.mp4 10.6 MB
  01. Antenna fundamentals and arrays.srt 6.8 KB
  02. MIMO concepts SU‑MIMO, MU‑MIMO, and massive MIMO.mp4 6.4 MB
  02. MIMO concepts SU‑MIMO, MU‑MIMO, and massive MIMO.srt 4 KB
  03. Beamsweeping and antenna architecture.mp4 9.3 MB
  03. Beamsweeping and antenna architecture.srt 6.8 KB
  04. Antenna deployment for urban and rural.mp4 13.8 MB
  04. Antenna deployment for urban and rural.srt 6.2 KB
  07. 6. Capacity, Coverage, and Dimensioning
  01. 5G network planning blueprint.mp4 7.7 MB
  01. 5G network planning blueprint.srt 4.9 KB
  03. Shannon’s law The theoretical capacity limit.mp4 6.2 MB
  03. Shannon’s law The theoretical capacity limit.srt 4.2 KB
  04. Cell edge 5G promise.mp4 6.2 MB
  04. Cell edge 5G promise.srt 3.4 KB
  05. The core trade-off Cell edge coverage vs. capacity.mp4 7.6 MB
  05. The core trade-off Cell edge coverage vs. capacity.srt 5 KB
  06. Impact of control channel overheads.mp4 6.8 MB
  06. Impact of control channel overheads.srt 4.1 KB
  08. 7. Spectrum Planning and Interference
  01. 5G spectrum and band allocation.mp4 16.3 MB
  01. 5G spectrum and band allocation.srt 7 KB
  02. Numerology selection.mp4 14.2 MB
  02. Numerology selection.srt 5.8 KB
  03. Supplementary uplink (SUL) deployment scenarios.mp4 8.6 MB
  03. Supplementary uplink (SUL) deployment scenarios.srt 5.9 KB
  04. Understanding 5G interference PIM, near–far effect.mp4 8.8 MB
  04. Understanding 5G interference PIM, near–far effect.srt 6.7 KB
  05. Interference fundamentals ACLR (adjacent channel leakage ratio).mp4 11.7 MB
  05. Interference fundamentals ACLR (adjacent channel leakage ratio).srt 8.9 KB
  09. 8. Coverage and Link Budget Analysis
  01. Coverage planning methodology.mp4 12.2 MB
  01. Coverage planning methodology.srt 7.3 KB
  02. Downlink link budget calculation.mp4 11.6 MB
  02. Downlink link budget calculation.srt 10.1 KB
  03. Uplink link budget calculation.mp4 7.8 MB
  03. Uplink link budget calculation.srt 4.5 KB
  04. Uplink link budget calculation (detailed).mp4 26.4 MB
  04. Uplink link budget calculation (detailed).srt 15.5 KB
  10. 9. Throughput and Performance Planning
  01. 5G peak data rate calculation.mp4 14.6 MB
  01. 5G peak data rate calculation.srt 12.7 KB
  02. Practical throughput planning (different modes and scenarios).mp4 9 MB
  02. Practical throughput planning (different modes and scenarios).srt 8.9 KB
  03. 5G peak data rate (throughput) Different modes.mp4 4.4 MB
  03. 5G peak data rate (throughput) Different modes.srt 3.6 KB
  04. 5G user plane latency considerations.mp4 6.4 MB
  04. 5G user plane latency considerations.srt 5.1 KB
  11. 10. 5G Deployment Architectures
  01. Overview of 5G deployment architectures.mp4 9.5 MB
  01. Overview of 5G deployment architectures.srt 6.3 KB
  02. Standalone (SA) deployment Option explained.mp4 9.7 MB
  02. Standalone (SA) deployment Option explained.srt 7.8 KB
  03. Non-standalone (NSA) deployment Option 3x ENDC architecture.mp4 8.2 MB
  03. Non-standalone (NSA) deployment Option 3x ENDC architecture.srt 5 KB
  04. Downlink traffic flow in ENDC (NSA) networks.mp4 15 MB
  04. Downlink traffic flow in ENDC (NSA) networks.srt 5.2 KB
  12. 11. Throughput Modeling and Analysis
  02. Practical MAC throughput measurement techniques.mp4 8.1 MB
  02. Practical MAC throughput measurement techniques.srt 7.5 KB
  03. Downlink throughput formulas for gNB (SA and NSA modes).mp4 6.4 MB
  03. Downlink throughput formulas for gNB (SA and NSA modes).srt 2.6 KB
  04. PDCP layer downlink throughput in eNB (NSA mode).mp4 5.7 MB
  04. PDCP layer downlink throughput in eNB (NSA mode).srt 3 KB
  06. The radio signal challenge Path loss and attenuation.mp4 6.3 MB
  06. The radio signal challenge Path loss and attenuation.srt 4.4 KB
  07. Large-scale effects Path loss models.mp4 8.2 MB
  07. Large-scale effects Path loss models.srt 5.3 KB
  08. Large-scale effects Log-normal fading.mp4 5.9 MB
  08. Large-scale effects Log-normal fading.srt 4.2 KB
  09. Small-scale effects The Doppler effect and phase noise.mp4 5.8 MB
  09. Small-scale effects The Doppler effect and phase noise.srt 3.5 KB
  10. Building penetration loss.mp4 10.7 MB
  10. Building penetration loss.srt 7 KB
  11. Foliage loss.mp4 7.8 MB
  11. Foliage loss.srt 4.7 KB
  12. The fundamental limit Thermal noise.mp4 7.2 MB
  12. The fundamental limit Thermal noise.srt 4.7 KB
  13. Understanding link budget.mp4 9.5 MB
  13. Understanding link budget.srt 4.1 KB
  05. RACH functions and mapping.mp4 5.9 MB
  05. RACH functions and mapping.srt 3.9 KB
  06. Preamble format sequence.mp4 9.8 MB
  06. Preamble format sequence.srt 5.1 KB
  07. Preamble formats – long sequence.mp4 6 MB
  07. Preamble formats – long sequence.srt 5.3 KB
  08. PRACH long sequence – cell radius calculation.mp4 5.5 MB
  08. PRACH long sequence – cell radius calculation.srt 4.2 KB
  09. Preamble formats – short sequence.mp4 10.8 MB
  09. Preamble formats – short sequence.srt 6.1 KB
  10. PRACH short sequence – cell radius calculation.mp4 5.9 MB
  10. PRACH short sequence – cell radius calculation.srt 3.8 KB
  04. Modulation and coding schemes (MCS).mp4 5.9 MB
  04. Modulation and coding schemes (MCS).srt 4.8 KB
  05. Duplexing methods FDD, TDD, and supplementary uplink (SUL).mp4 6.6 MB
  05. Duplexing methods FDD, TDD, and supplementary uplink (SUL).srt 4.8 KB
  03. The 5G triangle eMBB, URLLC, and mMTC.mp4 3 MB
  03. The 5G triangle eMBB, URLLC, and mMTC.srt 2.7 KB
  04. 5G network architectures Standalone (SA) vs. non-standalone (NSA).mp4 9.7 MB
  04. 5G network architectures Standalone (SA) vs. non-standalone (NSA).srt 6.2 KB
  05. 5G spectrum demystified Frequency ranges (FR1 and FR2).mp4 17 MB
  05. 5G spectrum demystified Frequency ranges (FR1 and FR2).srt 7.8 KB
  06. Why is 5G so fast Key enabling technologies.mp4 24.9 MB
  06. Why is 5G so fast Key enabling technologies.srt 8.7 KB

Description


5G New Radio (NR) Design and Planning: Coverage, Capacity, and Throughput

https://WebToolTip.com

Released 2/2026
With Rahul Kaundal and Itelcotech
MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch
Skill level: Intermediate | Genre: eLearning | Language: English + subtitle | Duration: 3h 44m | Size: 594 MB

Learn how to design, plan, and optimize 5G networks by learning about radio interface fundamentals, propagation analysis, link budget calculations, deployment architectures, and more.

Course details
Explore how to design and plan for effective 5G network deployment. Learn about the transition drivers from 4G to 5G and examine 5G’s core capabilities such as enhanced mobile broadband (eMBB), ultra‑reliable low‑latency communication (URLLC), and massive machine‑type communications (mMTC). Gain insight into architectural differences between standalone (SA) and non‑standalone (NSA) options, and discover the technological innovations enabling high‑speed 5G performance. Delve into radio wave propagation challenges, signal quality measurements, and antenna array techniques to plan well for coverage and capacity. Learn how to perform link budget calculations and throughput analysis, applying theoretical models to real‑world scenarios. Designed for telecom professionals, aspiring cloud engineers, tech managers, decision‑makers, researchers, and tech enthusiasts, this course provides the info needed to optimize network engineering efforts. By the end of the course, you will be able to plan, deploy, and analyze 5G deployments for maximum data capacity and efficient latency management.

Skills covered
5G, Network Administration

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