Objectives
After completing this course, the student will be able to:
■ Apply a consistent process to radio network design
■ Assess LTE RAN RF performance with RSRP and RSRQ measurements
■ Map network requirements to corresponding system parameters
■ Construct uplink/downlink link budgets to meet specific performance requirements
■ Use coverage and capacity requirements to determine the optimal radio network design
■ Exploit multiple antenna techniques to optimize coverage and performance
Outline
1. LTE Air Interface
1.1 E-UTRAN architecture
1.2 LTE Physical layer structure
1.3 Air interface resources
1.4 UE measurements (RSRP/RSRQ)
1.5 RSRP/RSRQ exercises
2. Overview of LTE Radio Network Design
2.1 Radio network design goals
2.2 Planning inputs and outputs
2.3 LTE RAN planning process
3. Market and Engineering Requirements
3.1 Coverage requirements
3.2 Capacity requirements
3.3 QoS requirements
3.4 Engineering requirements
4. LTE Link Budget
4.1 Cell edge throughput calculations
4.2 Link budget for UL and DL
4.3 Role of RRH and TMA
4.4 UL/DL link budget exercises
5. Antennas in LTE Networks
5.1 Multiple antenna techniques
5.2 Downlink feedback (CQI/RI/PMI)
5.3 Deployment considerations
5.4 Coverage prediction exercises
6. RF Design and Site Selection
6.1 RF design process and options
6.2 Morphology definitions
6.3 Propagation models
6.4 RF design tool configuration
6.5 Coverage prediction
7. RF Configuration Parameters
7.1 Sync signal and PCI planning
7.2 Reference signal planning
7.3 RA preamble planning
7.4 PCI and RACH planning exercises
8. Advanced Features of LTE
8.1 Carrier aggregation
8.2 HetNet and eICIC support
8.3 SON features