
We are going to learn about Introduction to 5G Air Interface, 5G Link Budget, Propagation Model Tuning, Concepts of 5G coverage simulations, Initial Parameter Planning (PRACH Planning) terms in our 5G planning course.
Explore the 5G air interface, its use cases, spectrum bands (FR1 and FR2), and the resource grid, including numerology, OFDM, subcarrier spacing, and physical resource blocks.
Calculate symbol duration in microseconds to determine slot timing for 5G frames, including cyclic prefix. Review PDSCH, PDCCH, PUSCH, PRACH, 5–400 MHz bandwidth, FR1/FR2, and MIB broadcast.
Explore why propagation models are essential in 5g planning, and learn how deterministic models like free space path loss, plain earth, and Okumura data guide tuning and drive testing.
Explore how propagation models differ by location, frequency, and clutter type, and tune them using drive tests and CW data.
Explore how 5g rf planning tools run coverage simulations, detailing map data inputs, propagation models, and frame structure definitions to optimize site placement.
5G NR is far more complex than previous generations of mobile networks and will still need to work together with current 4G LTE and WiFi radio access technologies (RATs), leading to challenges in network planning.
So we are going to learn about Introduction to 5G Air Interface, 5G Link Budget, Propagation Model Tuning, Concepts of 5G coverage simulations, Initial Parameter Planning (PRACH Planning) terms in our 5G planning course.