Acoustic Balance: Weighing in Ultrasonic Non-Contact Manipulators

被引:9
|
作者
Nakahara, Jared [1 ]
Smith, Joshua R. [1 ,2 ]
机构
[1] Univ Washington, Dept Elect Engn, Seattle, WA 98195 USA
[2] Univ Washington, Allen Sch Comp Sci & Engn, Seattle, WA 98195 USA
关键词
Weighing; acoustic levitation; non-contact manipulation; DENSITY; SOUND; MASS;
D O I
10.1109/LRA.2022.3190075
中图分类号
TP24 [机器人技术];
学科分类号
080202 ; 1405 ;
摘要
Acoustic traps and levitation systems can lift, translate and manipulate a wide range of objects and materials without contact. This enables new manipulation capabilities for robots that may not be possible otherwise. This paper presents an acoustic balance, a contactless method for weighing acoustically trapped objects in air. The method works by measuring a step response: the system commands a change in the phase of the acoustic emitters, which results in a sudden change in the equilibrium position of the trap. The object held within the acoustic trap undergoes damped oscillation as it settles into the new equilibrium point. The mass of the trapped object can be determined from the frequency of oscillation. Combined with methods for adding and merging materials in the trap, the method presented here can potentially enable a robot to operate a closed-loop process to acquire or maintain a desired quantity of material. Using weight as an error signal, material could be added by the acoustic system until the required quantity is in the trap.
引用
收藏
页码:9145 / 9150
页数:6
相关论文
共 50 条
  • [31] Non-contact ultrasonic detection of angled surface defects
    Dutton, B.
    Clough, A. R.
    Rosli, M. H.
    Edwards, R. S.
    NDT & E INTERNATIONAL, 2011, 44 (04) : 353 - 360
  • [32] Non-contact ultrasonic guided wave inspection of rails
    Nguyen, Thompson V.
    Mariani, Stefano
    di Scalea, Francesco Lanza
    HEALTH MONITORING OF STRUCTURAL AND BIOLOGICAL SYSTEMS 2014, 2014, 9064
  • [33] NON-CONTACT ULTRASONIC CHARACTERIZATION OF ANGLED SURFACE DEFECTS
    Edwards, R. S.
    Dutton, B.
    Rosli, M. H.
    Clough, A. R.
    REVIEW OF PROGRESS IN QUANTITATIVE NONDESTRUCTIVE EVALUATION, VOLS 30A AND 30B, 2011, 1335 : 257 - 264
  • [34] Non-Contact Interaction of Ultrasonic Wave on Laser Beam
    Muc, S.
    Gudra, T.
    Beres-Pawlik, E.
    ACTA PHYSICA POLONICA A, 2011, 120 (04) : 702 - 704
  • [35] Non-contact ultrasonic imaging for the evaluation of thermal injury
    Jones, L.
    Lee, D.
    Iranika, S.
    Vanderkam, V.
    Achauer, B.
    Ultrasound in Medicine and Biology, 2000, 26 (SUPPL. 2):
  • [36] Ultrasonic Non-Contact Analyzer: NCA-1000
    不详
    AIRCRAFT ENGINEERING AND AEROSPACE TECHNOLOGY, 1999, 71 (02): : 205 - 206
  • [37] Non-contact ultrasonic quality measurements of food products
    Gan, Tat Hean
    Pallav, Prakash
    Hutchins, David A.
    JOURNAL OF FOOD ENGINEERING, 2006, 77 (02) : 239 - 247
  • [38] Non-contact ultrasonic treatment of metals in a magnetic field
    Wilgen, John B.
    Kisner, Roger A.
    Jaramillo, Roger A.
    Ludtka, Gerard M.
    Mackiewicz-Ludtka, Gail
    MATERIALS PROCESSING UNDER THE INFLUENCE OF EXTERNAL FIELDS, 2007, : 145 - +
  • [39] Automated non-contact NDT by ultrasonic surface waves
    Liu, Qiang
    Piwakowski, Bogdan
    Lafhaj, Zoubeir
    Agred, Kahina
    2014 IEEE FAR EAST FORUM ON NONDESTRUCTIVE EVALUATION/TESTING (FENDT), 2014, : 79 - 83
  • [40] Ultrasonic Devices for Non-Contact Intensification of Technological Processes
    V. N. Khmelev
    S. N. Tsyganok
    R. V. Barsukov
    M. V. Khmelev
    A. R. Barsukov
    Fibre Chemistry, 2022, 53 : 391 - 394