PILOT: High-Precision Indoor Localization for Autonomous Drones

01/25/2022
by   Alireza Famili, et al.
0

In many scenarios, unmanned aerial vehicles (UAVs), aka drones, need to have the capability of autonomous flying to carry out their mission successfully. In order to allow these autonomous flights, drones need to know their location constantly. Then, based on the current position and the final destination, navigation commands will be generated and drones will be guided to their destination. Localization can be easily carried out in outdoor environments using GPS signals and drone inertial measurement units (IMUs). However, such an approach is not feasible in indoor environments or GPS-denied areas. In this paper, we propose a localization scheme for drones called PILOT (High-Precision Indoor Localization for Autonomous Drones) that is specifically designed for indoor environments. PILOT relies on ultrasonic acoustic signals to estimate the target drone's location. In order to have a precise final estimation of the drone's location, PILOT deploys a three-stage localization scheme. The first two stages provide robustness against the multi-path fading effect of indoor environments and mitigate the ranging error. Then, in the third stage, PILOT deploys a simple yet effective technique to reduce the localization error induced by the relative geometry between transmitters and receivers and significantly reduces the height estimation error. The performance of PILOT was assessed under different scenarios and the results indicate that PILOT achieves centimeter-level accuracy for three-dimensional localization of drones.

READ FULL TEXT

page 1

page 5

page 12

research
04/18/2023

Autonomous Systems: Autonomous Systems: Indoor Drone Navigation

Drones are a promising technology for autonomous data collection and ind...
research
01/26/2022

OPTILOD: Optimal Beacon Placement for High-Accuracy Indoor Localization of Drones

For many applications, drones are required to operate entirely or partia...
research
08/10/2020

Robust and Scalable Techniques for TWR and TDoA based localization using Ultra Wide Band Radios

Current trends in autonomous vehicles and their applications indicates a...
research
11/15/2022

Drone-based Volume Estimation in Indoor Environments

Volume estimation in large indoor spaces is an important challenge in ro...
research
03/07/2023

Benchmarking and Security Considerations of Wi-Fi FTM for Ranging in IoT Devices

The IEEE 802.11mc standard introduces fine time measurement (Wi-Fi FTM),...
research
06/16/2023

Pose Graph Optimization for a MAV Indoor Localization Fusing 5GNR TOA with an IMU

This paper explores the potential of 5G new radio (NR) Time-of-Arrival (...
research
11/26/2020

Learning to Assist Drone Landings

Unmanned aerial vehicles (UAVs) are often used for navigating dangerous ...

Please sign up or login with your details

Forgot password? Click here to reset