Summaries of Literature's: Difference between revisions
Jump to navigation
Jump to search
No edit summary |
No edit summary |
||
Line 14: | Line 14: | ||
*[[GPS Guided Autonomous Drone]] | *[[GPS Guided Autonomous Drone]] | ||
*[[Self-Navigating Quadcopter]] | *[[Self-Navigating Quadcopter]] | ||
*[[Self-Stabilizing Quad-Rotor Helicopter]] | |||
*[[Flight Control and Hardware Design of Multi-Rotor Systems]] | |||
*[[Towards autonomous navigation of multiple pocket-drones in real-world environments]] | |||
*[[On-board Bluetooth-based Relative Localization for Collision Avoidance in Micro Air Vehicle Swarms]] | |||
*[[Object detection and tracking for real time field surveilliance applications]] |
Revision as of 00:04, 29 April 2018
- Methods, systems and devices for delivery drone security
- Robotic aerial vehicle delivery system and method
- Method and system for drone deliveries to vehicles in route
- Can drones deliver?
- Autonomous Drones for Assisting Rescue Services within the context of Natural Disasters
- Simple GUI Wireless Controller of Quadcopter
- Modelling and control of quadcopter
- Quadcopter Flight Dynamics
- Method and system for detecting objects external to a vehicle
- Design and Control of an Unmanned Aerial Vehicle for Autonomous Parcel Delivery with Transition from Vertical Take-off to Forward Flight
- Drones in Logistics: A Feasible Future or a waste of effort
- Implementing Delivery Drones in Logistics Business Process: Case of Pharmaceutical Industry
- Autonomous Measurement Drone for Remote Dangerous Source Location Mapping
- GPS Guided Autonomous Drone
- Self-Navigating Quadcopter
- Self-Stabilizing Quad-Rotor Helicopter
- Flight Control and Hardware Design of Multi-Rotor Systems
- Towards autonomous navigation of multiple pocket-drones in real-world environments
- On-board Bluetooth-based Relative Localization for Collision Avoidance in Micro Air Vehicle Swarms
- Object detection and tracking for real time field surveilliance applications