Online Path Generation and Navigation for Swarms of UAVs

12/19/2019
by   Adnan Ashraf, et al.
0

With the growing popularity of Unmanned Aerial Vehicles (UAVs) for consumer applications, the number of accidents involving UAVs is also increasing rapidly. Therefore, motion safety of UAVs has become a prime concern for UAV operators. For a swarm of UAVs, a safe operation can not be guaranteed without preventing the UAVs from colliding with one another and with static and dynamically appearing, moving obstacles in the flying zone. In this paper, we present an online, collision-free path generation and navigation system for swarms of UAVs. The proposed system uses geographical locations of the UAVs and of the successfully detected, static and moving obstacles to predict and avoid: (1) UAV-to-UAV collisions, (2) UAV-to-static-obstacle collisions, and (3) UAV-to-moving-obstacle collisions. Our collision prediction approach leverages efficient runtime monitoring and Complex Event Processing (CEP) to make timely predictions. A distinctive feature of the proposed system is its ability to foresee potential collisions and proactively find best ways to avoid predicted collisions in order to ensure safety of the entire swarm. We also present a simulation-based implementation of the proposed system along with an experimental evaluation involving a series of experiments and compare our results with the results of four existing approaches. The results show that the proposed system successfully predicts and avoids all three kinds of collisions in an online manner. Moreover, it generates safe and efficient UAV routes, efficiently scales to large-sized problem instances, and is suitable for cluttered flying zones and for scenarios involving high risks of UAV collisions.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
01/08/2021

Practical Control for Multicopters to Avoid Non-Cooperative Moving Obstacles

Unmanned Aerial Vehicles (UAVs) are now becoming increasingly accessible...
research
02/25/2016

Autonomous navigation for low-altitude UAVs in urban areas

In recent years, consumer Unmanned Aerial Vehicles have become very popu...
research
09/11/2022

Real-Time Heuristic Framework for Safe Landing of UAVs in Dynamic Scenarios

The world we live in is full of technology and with each passing day the...
research
10/30/2021

Advanced Algorithms of Collision Free Navigation and Flocking for Autonomous UAVs

Unmanned aerial vehicles (UAVs) have become very popular for many milita...
research
02/09/2023

PACNav: A collective navigation approach for UAV swarms deprived of communication and external localization

This article proposes Persistence Administered Collective Navigation (PA...
research
05/15/2019

Machine Learning-Based Delay-Aware UAV Detection and Operation Mode Identification over Encrypted Wi-Fi Traffic

The consumer UAV (unmanned aerial vehicle) market has grown significantl...
research
11/03/2019

Trajectory Synthesis for a UAV Swarm to Perform Resilient Requirement-Aware Surveillance: A Smart Grid-based Study

A smart grid is a widely distributed engineering system with overhead tr...

Please sign up or login with your details

Forgot password? Click here to reset