Collision Dynamics of Motorized Deformable Propellers for Drones

被引:0
|
作者
Hung Tien Pham [1 ]
Dinh Quang Nguyen [2 ]
Son Tien Bui [2 ]
Loianno, Giuseppe [3 ]
Van Anh Ho [1 ,4 ]
机构
[1] Japan Adv Inst Sci & Thchnol, Sch Mat Sci, 1-1 Asahidai, Nomi, Ishikawa 9231292, Japan
[2] Hanoi Univ Ind, 298 Cau Dien St, Hanoi, Vietnam
[3] NYU, Tandon Sch Engn, Brooklyn, NY 11201 USA
[4] Japan Sci & Technol Agcy, PRESTO, Kawaguchi, Saitama 3320012, Japan
关键词
AVOIDANCE; UAV;
D O I
10.1109/UR61395.2024.10597535
中图分类号
TP24 [机器人技术];
学科分类号
080202 ; 1405 ;
摘要
This paper investigates and analyzes the behavior of a deformable propeller during and after collisions. The experimental setup includes a deformable propeller, a BLDC motor, and a collision initiated while the propeller is rotating steadily. Here, we examine the changes in propeller's angular velocity over time from the start of the collision until it fully recovers its initial velocity. This variation will be compared between the experimentally measured wing velocity using an encoder and the calculated propeller's angular velocity in the simulation. The constructed model describes the relationship between propeller's angular velocity and the input voltage supplied to the motor based on the Lagrange method. The study confirmed the shape transformation process and full restoration of the propeller's original shape following collisions through high-speed video analysis. The results demonstrate consistent monitoring of collision initiation and the subsequent recovery process. This research enhances comprehension of the collision dynamics, thereby contributing to a deeper understanding of the fundamental physics governing deformable propellers, ultimately enhancing safety for drones.
引用
收藏
页码:176 / 183
页数:8
相关论文
共 50 条
  • [1] An overview on collision dynamics of deformable particles
    Zohre Alinejad
    Morteza Bayareh
    Behzad Ghasemi
    Afshin Ahmadi Nadooshan
    Chemical Papers, 2022, 76 : 6017 - 6031
  • [2] An overview on collision dynamics of deformable particles
    Alinejad, Zohre
    Bayareh, Morteza
    Ghasemi, Behzad
    Nadooshan, Afshin Ahmadi
    CHEMICAL PAPERS, 2022, 76 (10) : 6017 - 6031
  • [3] Tombo Propeller: Bioinspired Deformable Structure Toward Collision-Accommodated Control for Drones
    Son Tien Bui
    Quan Khanh Luu
    Dinh Quang Nguyen
    Nhat Dinh Minh Le
    Loianno, Giuseppe
    Van Anh Ho
    IEEE TRANSACTIONS ON ROBOTICS, 2023, 39 (01) : 521 - 538
  • [4] Drones, wind turbines, and preventing propellers from rotating in phase
    Andrew Bell
    Acoustics Australia, 2015, 43 : 203 - 203
  • [5] Drones, wind turbines, and preventing propellers from rotating in phase
    Bell, Andrew
    ACOUSTICS AUSTRALIA, 2015, 43 (02): : 203 - 203
  • [6] Collision Avoidance Mechanism for Swarms of Drones
    Marek, Dariusz
    Biernacki, Piotr
    Szygula, Jakub
    Domanski, Adam
    Paszkuta, Marcin
    Szczygiel, Marta
    Krol, Marcel
    Wojciechowski, Konrad
    SENSORS, 2025, 25 (04)
  • [7] Collision dynamics of traveling bands in systems of deformable self-propelled particles
    Yamanaka, Sadato
    Ohta, Takao
    PHYSICAL REVIEW E, 2014, 90 (04)
  • [8] Collision detection for deformable objects
    Teschner, M
    Kimmerle, S
    Heidelberger, B
    Zachmann, G
    Raghupathi, L
    Fuhrmann, A
    Cani, MP
    Faure, F
    Magnenat-Thalmann, N
    Strasser, W
    Volino, P
    COMPUTER GRAPHICS FORUM, 2005, 24 (01) : 61 - 81
  • [9] A collision model for deformable bodies
    Deguet, A
    Joukhadar, A
    Laugier, C
    1998 IEEE/RSJ INTERNATIONAL CONFERENCE ON INTELLIGENT ROBOTS AND SYSTEMS - PROCEEDINGS, VOLS 1-3: INNOVATIONS IN THEORY, PRACTICE AND APPLICATIONS, 1998, : 636 - 641
  • [10] Near Midair Collision Analog for Drones Based on Unmitigated Collision Risk
    Weinert A.
    Alvarez L.
    Owen M.
    Zintak B.
    Journal of Air Transportation, 2022, 30 (02): : 37 - 48