What you will learn?
Small RPC with Drone Maintenance & DaaS Training
PART A
Theory Sessions – Day 1 & 2
| Sr. No. |
Subject |
Duration |
| 1 |
Stakeholders and their Laws, Drone Rules 2021 |
1:30 Hours |
| 2 |
Basic Principles of Flight |
1:00 Hours |
| 3 |
ATC Procedures and Radio Telephony |
1:15 Hours |
| 4 |
Fixed wing Operations and Aerodynamics |
1:15 Hours |
| 5 |
Rotorcraft Operations and Aerodynamic |
1:30 Hours |
| 6 |
Hybrid Operations and Aerodynamics |
0:30 Hours |
| 7 |
Weather and Meteorology |
1:15 Hours |
| 8 |
Drone Equipment and maintenance |
1:30 Hours |
| 9 |
Risk Assessment and Analysis – Safety Management / TEM |
1:30 Hours |
| 10 |
Payload installation and utilization |
1:15 Hours |
| 11 |
Intro to Drone Data and Analysis |
1:30 Hours |
Simulator Session – Day 3
| Sr. No. |
Subject |
Duration |
| Assesment |
Theory Test - Final |
0:40 Hours |
| Ex. 1, 2, 3 |
Introduction to flight simulator, simulator familiarization, control check, pre-flight checks, Take off, cruise. |
0:30 Hours |
| Ex. 4, 5, 6 |
Approach, go-around and landing, post flight checks, Cruise and Turns, Climbing and Climbing Turns, Descend and Descending Turns |
0:30 Hours |
| Ex. 7, 8 |
Disorientation and Recovery, Circuit Flying – Rectangle/ Square/ Circle / Orbit, Flying – Figure of 8 |
0:30 Hours |
| Ex. 9 |
Gimbal Controls (Pan, tilt and zoom |
0:30 Hours |
| Ex. 10 |
Night flying |
0:30 Hours |
| Ex. 11 |
Abnormal/ Emergency procedures |
0:15 Hours |
| Ex. 12 |
Sim Test |
0:15 Hours |
Flying Session – Day 4 & 5
| Sr. No. |
Subject |
Duration |
| Ex. 1 |
Intro to Digital Sky platform |
0:30 Hours |
| Ex.2 |
RPAS familiarization and Safety briefing |
0:15 Hours |
| Ex.3 |
Introductory flight where the student experiences sensitivity of controls and learning the orientation of the RPA. |
0:15 Hours |
| Ex.4 |
Takeoff, Climbing, descending and maintaining height. |
0:15 Hours |
| Ex.5 |
Basic Controls: Pitch, Roll and Yaw |
0:15 Hours |
| Ex.6 |
Flying in a disorientation scenario and to recovery from the same. |
0:15 Hours |
| Ex.7 |
Progress Check – Multirotor |
0:15 Hours |
| Ex.8 |
Level turns in both directions |
0:15 Hours |
| Ex.9 |
Climbing and descending turns |
0:15 Hours |
| Ex.10 |
Left and right square circuits patterns |
0:15 Hours |
| Ex.11 |
Flying in circles |
0:15 Hours |
| Ex.12 |
Flying in figure of 8 |
0:15 Hours |
| Ex.13 |
Mission Planning and Instrument Flying |
0:15 Hours |
| Ex.14 |
Auto Mission and Flight |
0:15 Hours |
| Ex.15 |
Night Flying |
0:15 Hours |
| Ex.16 |
Abnormal/ Emergency procedures |
0:15 Hours |
| Ex.17 |
Final Test – Multirotor |
00:20 Hours |
PART B
Theory Session – Day 1 – 2.5
| Sr. No. | Subject | Duration |
|---|
| 1 | Safety: DGCA Rules and Regulations, Regulatory Overview | 20:00 Hours |
| 2 | Drone Fundamentals & Assembly Basics | |
| 3 | Drone Types: Multirotor, Fixed-Wing, Hybrid | |
| 4 | Key Components: FC, Motors, ESCs, GPS, Frame | |
| 5 | Bill of Materials (BoM), Safety Tools & Protocols | |
| 6 | Basic Flight Principles | |
| 7 | Electronics, Wiring & Configuration | |
| 8 | Component Identification | |
| 9 | Tool Handling & Mock Drone Frame Setup | |
| 10 | Troubleshooting & Battery Management | |
| 11 | Drone as a Service (DaaS) | |
| 12 | Capstone Project & Final Evaluation | |
| 13 | Final Theory Test | |
Simulator Session – Day 3
| Sr. No. | Subject | Duration |
|---|
| 1 | Assembly Session (Frame Assembly & Calibration) | 04:00 Hours |
| Sr. No. | Subject | Duration |
|---|
| 1 | RPAS Familiarization, Pre-flight Checks & Safety Briefing | 01:15 Hours |
| 2 | Introductory Flight (Orientation & Control Sensitivity) | |
| 3 | Manual Take-Off & Hovering | |
| 4 | Auto Mission & Flight, Mission Planning & Instrument Flying | |
Outcome: DGCA Certified Remote Pilot Instructor (RPI) – Medium Class
- Understand DGCA rules, airspace structure, safety protocols, and RPAS responsibilities.
- Identify, assemble, configure, and calibrate key drone components (FC, ESC, GPS, motors, frame, power).
- Apply flight principles and demonstrate technical skills in wiring, troubleshooting & battery management.
- Develop flying proficiency through simulator and real-time sessions.
- Plan and conduct autonomous missions using ground control software.
- Demonstrate operational readiness through capstone project and final evaluation.
- Understand Drone-as-a-Service (DaaS) applications in mapping, agriculture, inspection, and industry.