BEAVIS: Balloon Enabled Aerial Vehicle for IoT and Sensing

08/02/2023
by   Suryansh Sharma, et al.
0

UAVs are becoming versatile and valuable platforms for various applications. However, the main limitation is their flying time. We present BEAVIS, a novel aerial robotic platform striking an unparalleled trade-off between the manoeuvrability of drones and the long lasting capacity of blimps. BEAVIS scores highly in applications where drones enjoy unconstrained mobility yet suffer from limited lifetime. A nonlinear flight controller exploiting novel, unexplored, aerodynamic phenomena to regulate the ambient pressure and enable all translational and yaw degrees of freedom is proposed without direct actuation in the vertical direction. BEAVIS has built-in rotor fault detection and tolerance. We explain the design and the necessary background in detail. We verify the dynamics of BEAVIS and demonstrate its distinct advantages, such as agility, over existing platforms including the degrees of freedom akin to a drone with 11.36x increased lifetime. We exemplify the potential of BEAVIS to become an invaluable platform for many applications.

READ FULL TEXT

page 1

page 5

page 6

page 9

page 12

research
03/20/2020

Design and optimal control of a tiltrotor micro aerial vehicle for efficient omnidirectional flight

Omnidirectional micro aerial vehicles are a growing field of research, w...
research
02/01/2022

Modular Multi-Rotors: From Quadrotors to Fully-Actuated Aerial Vehicles

Traditional aerial vehicles have specific characteristics to perform spe...
research
08/20/2019

State Space System Modeling of a Quad Copter UAV

In this paper, a linear mathematical model for a quad copter unmanned ae...
research
08/20/2019

State Space System Modelling of a Quad Copter UAV

In this paper, a linear mathematical model for a quad copter unmanned ae...
research
06/08/2022

Finding and Following Optimal Trajectories for an Overactuated Floating Robotic Platform

The recent increase in yearly spacecraft launches and the high number of...
research
09/29/2020

Enforcing nonholonomic constraints in Aerobat, a roosting flapping wing model

Flapping wing flight is a challenging dynamical problem and is also a ve...
research
01/08/2020

Bio-inspired Adaptive Latching System for Towing and Guiding Power-less Floating Platforms with Autonomous Robotic Boats

Autonomous robotic boats are expected to perform several tasks: 1) navig...

Please sign up or login with your details

Forgot password? Click here to reset