Quad-cone-rotor: A Novel Tilt Quadrotor with Severe-fault-tolerant Ability

08/19/2021
by   Zhe Shen, et al.
0

Conventional quadrotors received great attention in trajectory design and fault-tolerant control in these years. The direction of each thrust is perpendicular to the body because of the geometrics in mechanical design. Comparing with the conventional quadrotor, a novel quadrotor named quad-tilt-rotor brings better freedom in manipulating the thrust vector. Quad-tilt-rotor augments the additional degrees of freedom in the thrust, providing the possibility of violating the normal direction of the thrust in the conventional quadrotor. This provides the ability of greater agility in control. This paper presents a novel design of a quad-tilt-rotor (quad-cone-rotor) whose thrust can be assigned along the edge of a cone shape. Besides the inheriting merits in agile from quad-tilt-rotor, the quad-cone-rotor is expected to take fault-tolerant control in severe dynamic failure (total loss in all thrusts). We simulate the control result in a UAV simulator in SIMULINK, MATLAB.

READ FULL TEXT
research
05/25/2023

Failure Detection and Fault Tolerant Control of a Jet-Powered Flying Humanoid Robot

Failure detection and fault tolerant control are fundamental safety feat...
research
04/05/2021

Fault-tolerant Control of Robot Manipulators with Sensory Faults using Unbiased Active Inference

This work presents a novel fault-tolerant control scheme based on active...
research
09/11/2020

DMR-based Technique for Fault Tolerant AES S-box Architecture

This paper presents a high-throughput fault-resilient hardware implement...
research
06/23/2023

Geometric Fault-Tolerant Control of Quadrotors in Case of Rotor Failures: An Attitude Based Comparative Study

The ability of aerial robots to operate in the presence of failures is c...
research
11/23/2022

Uniform Passive Fault-Tolerant Control of a Quadcopter with One, Two, or Three Rotor Failure

This study proposes a uniform passive fault-tolerant control (FTC) metho...
research
11/01/2020

Fault Tolerant Control of Multirotor UAV for Piloted Outdoor Flights

This paper aims to develop a Fault Tolerant Control (FTC) architecture, ...
research
11/05/2022

Electronics and Sensor Subsystem Design for Daedalus 2 on REXUS 29: An Autorotation Probe for Sub-Orbital Re-Entry

The Daedalus 2 mission aboard REXUS 29 is a technology demonstrator for ...

Please sign up or login with your details

Forgot password? Click here to reset