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Qingcheng Guo

3 accepted papers

2025

Enhancing Lift and Dynamic Stability Through Morphological Optimization of Wings for Tailless Flapping-Wing Robots

RA-L 2025

The design of wings is crucial for tailless Flapping-wing robots (FWRs), as these robots rely exclusively on their wings for lift generation and body control. However, the current methodology for wing design primarily depends on the experience and heuristics of engineers. This study aims to explore

Cited by 5SourceScholar
2025

High-fidelity Model and Nonlinear Model Predictive Control for Flip Maneuvers of Tailless Flapping-Wing Robots

IROS 2025

Insects and hummingbirds exhibit remarkable agility, including full body flip maneuvers. Achieving similar maneuvers of bio-inspired tailless flapping-wing robots (FWRs) is challenging due to the complex dynamics, inherent nonlinearities and control issues. This paper presents an nonlinear model pre

Cited by 0SourceScholar
2025

RoboNotonecta: A Backswimmer-inspired Swimming Miniature Robot with Efficient Low-power Propulsion and Agile Aquatic Maneuverability

IROS 2025

In this letter, we present the design, manufacturing, and performance test of a centimeter-scale two-legged swimming robot, RoboNotonecta, inspired by the efficient and agile locomotion of an aquatic beetle backswimmer (Notonectid). The robot utilizes a crank-slider and slider-rocker paddling mechan

Cited by 0SourceScholar