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Danial Sufiyan Bin Shaiful

7 accepted papers

2021

Joint Mechanical Design and Flight Control Optimization of a Nature-Inspired Unmanned Aerial Vehicle via Collaborative Co-Evolution

RA-L 2021

In this work, a collaborative co-evolution approach is adopted to solve a joint physical design and feedback control optimization problem of a nature-inspired Unmanned Aerial Vehicle (UAV). Unlike traditional multirotors and fixed-wing aircraft, lift is achieved by spinning its entire body with atta

Cited by 8SourceScholar
2020

Flydar: Magnetometer-based High Angular Rate Estimation during Gyro Saturation for SLAM

ICRA 2020poster

In this paper, the high angular rate estimation for simultaneous localisation and mapping (SLAM) of a Flying Li-DAR (Flydar) is presented. The proposed EKF-based algorithm exploits the sinusoidal magnetometer measurement generated by the continuously rotating airframe for estimation of the robot hov…

Cited by 9SourceScholar
2019

Design Optimization of Sparse Sensing Array for Extended Aerial Robot Navigation in Deep Hazardous Tunnels

RA-L 2019

In this letter, the design optimization and localization with sparse sensing array of range-based sensors are presented. This optimization focuses on an optimized sparse sensing array for localization and autonomous navigation in tunnel environments with right rectangular prism geometry and the auto

Cited by 16SourceScholar
2019

Dynamics and Control of a Collaborative and Separating Descent of Samara Autorotating Wings

RA-L 2019

To deliver lightweight sensor payloads to disaster-struck areas by means of an aerial deployment, a novel bio-inspired method capitalizing on autorotation to slow down vertical descent rate is proposed. This concept is illustrated using the samara autorotating wing (SAW) platform, which features a u

Cited by 19SourceScholar
2018

Direction Controlled Descent of Samara Autorotating Wings (SAW) with N-Wings

ICRA 2018poster

The seeds of Maple trees (Samara) use autorotation as a unique mechanism to disperse their seeds. By exploiting gyroscopic stability of a spinning wing, the Samara is able to cover large horizontal distance despite having no form of propulsion. We applied and adapted this natural ability in our nove…

Cited by 15SourceScholar
2018

Direction Controlled Descent of Samara Autorotating Wings (SAW) with N-Wings * Research supported by the SUTD-MIT International Design Centre (IDC) and by the Temasek Laboratories Defence Innovation Research Programme (DIRP) IGDSP15020141

ICRA 2018

The seeds of Maple trees (Samara) use autorotation as a unique mechanism to disperse their seeds. By exploiting gyroscopic stability of a spinning wing, the Samara is able to cover large horizontal distance despite having no form of propulsion. We applied and adapted this natural ability in our nove

Cited by 27SourceScholar
2017

Design and dynamic analysis of a Transformable Hovering Rotorcraft (THOR)

ICRA 2017poster

This paper describes the Transformable HOvering Rotorcraft (THOR), a prototype Unmanned Aerial Vehicle (UAV) that explores a novel approach in combining the range and speed of a horizontal flying platform with the hovering and maneuverability of a rotor-wing. This is achieved by integrating a taille…

Cited by 52SourceScholar