paper-with-me

홈 › Papers

Thrust Regulation Through Wing Linkage Modulation on the Aerobat Platform: Piezoelectric Slip-Stick Actuated Regulator Development

2026-04-20 · Luca Ciampaglia arxiv

Aerobat is a bat-inspired flapping-wing robot with a wing gait generate by the computational structure, a planar linkage of carbon fiber links driven by a single motor. This design minimizes weight but couples both wings to a shared input motor, eliminating independent thrust control and preventing asymmetric maneuvers. This thesis investigates thrust regulation by modifying the effective length of the first radius link $R_1$ in the computational structure. Static experiments using FDM-printed $R_1$ links at three lengths (28.58, 29.33, and 30.08 mm) across 3,4, and 5 Hz flapping frequencies demonstrated that a 1.5 mm length increase produced a 37% increase in peak lift force and shifted peak force timing within the downstroke. An additional experiment using a string-actuated regulator mechanism was performed. Further actuation methods were evaluated: sub-gram micro-servo and piezoelectric slip-stick. After both the string-tension and micro-servo actuation methods failed due to structural member compliance and motor fragility respectively, a TULA-50 piezoelectric slip-stick actuator was selected. Multiple force-amplifying mechanisms were prototyped, resulting in a direct-drive variable-length mechanism. This final mechanism was demonstrated in a preliminary bench-top test, though insufficient force output prevented dynamic testing during flapping. This work establishes linkage-length modulation via embedded slip-stick actuation as a viable approach to independent wing thrust control.

📄 PDF Abstract BibTeX arXiv:2604.18900

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

Mixed-Integer vs. Continuous Model Predictive Control for Binary Thrusters: A Comparative Study

2026-03-20 · Franek Stark, Jakob Middelberg, Shubham Vyas arxiv

Binary on/off thrusters are commonly used for spacecraft attitude and position control during proximity operations. However, their discrete nature poses challenges for conventional continuous control methods. The control…

Continuous Control

Manipulider: A Multi-Engine Buoyancy-Controlled Robot for Thrusterless Underwater Gliding and Manipulation

2026-06-19 · Yitao Jiang, Yewei Huang, Weizhi Cao, Mingi Jeong 외 arxiv

The Manipulider is a buoyancy-actuated underwater robot that enables thrusterless, glide-like locomotion and attitude-based manipulation, while providing a magnetic modular interface for rapid payload swapping (e.g., a g…

A Switching Thrust Tracking Controller for Load Constrained Wind Turbines

2022-04-11 · Jean Gonzalez Silva, Daan van der Hoek, Sebastiaan Paul Mulders, Riccardo Ferrari 외

Wind turbines are prone to structural degradation, particularly in offshore locations. Based on the structural health condition of the tower, power de-rating strategies can be used to reduce structural loads at the cost …

Spinning Quadrotor: Hover Thrust Augmentation with Passive Lifting Surfaces

2026-08-24 · Aniketh Parkala, Harikumar Kandath arxiv

Conventional multirotor aerial vehicles actively suppress yaw rotation during hover, expending power to maintain a fixed heading despite the fact that yaw regulation is not required for force balance or altitude control.…

Thruster-Enhanced Locomotion: A Decoupled Model Predictive Control with Learned Contact Residuals

2025-08-05 · Chenghao Wang, Alireza Ramezani arxiv

Husky Carbon, a robot developed by Northeastern University, serves as a research platform to explore unification of posture manipulation and thrust vectoring. Unlike conventional quadrupeds, its joint actuators and thrus…