Numerical and experimental verification of an inverse-direct approach for load and strain monitoring in aeronautical structures

被引:7
|
作者
Colombo, Luca [1 ]
Sbarufatti, Claudio [1 ]
Dal Bosco, Luca [1 ]
Bortolotti, Davide [1 ]
Dziendzikowski, Michal [2 ]
Dragan, Krzysztof [2 ]
Concli, Franco [3 ]
Giglio, Marco [1 ]
机构
[1] Politecn Milan, Dipartimento Meccan, Via La Masa 1, Milan, Italy
[2] Air Force Inst Technol, Airworthiness Div, Warsaw, Poland
[3] Libera Univ Bolzano, Fac Sci & Technol, Bolzano, Italy
来源
关键词
calibration matrix; equivalent load; inverse problem; load monitoring; strain; usage monitoring; IDENTIFICATION; SYSTEM; HEALTH;
D O I
10.1002/stc.2657
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Aeronautical structures are increasingly aging, and the occurrence of unexpected loads could reduce their operability. A health and usage monitoring system would enable the continuous monitoring of the state of health of a structure and track its aging by a load monitoring system, which aims at the real-time reconstruction of the loads acting on a structure. However, sometimes the loads and the induced strain and stress fields are difficult to be reconstructed exactly, as for complex loading due to flight maneuvers. In this work, the full strain and load fields of a structure are reconstructed by an inverse-direct approach, leveraging on the calibration matrix approach. The latter exploits a least-squares minimization of an error functional, defined as the comparison between measured strains in discrete positions and a numerical formulation of the same, to reconstruct an equivalent, however representative, load set. By assuming a linear relationship between strain and load through a calibration matrix, this minimization can be performed analytically, leading to a computationally very efficient algorithm that can be operated online. Once the equivalent load set is computed, the full strain field can be estimated relying on a second calibration matrix linking the external loads to the strain field of the complete structure. The method has been numerically tested with an unmanned aerial vehicle (UAV) subjected to aerodynamic pressure loads simulating flight maneuvers. Finally, the results are experimentally validated during a ground test program on a real UAV, proving the robustness to different experimental uncertainties.
引用
收藏
页数:16
相关论文
共 50 条
  • [1] Numerical Approach in the Evaluation of Aeronautical Structures Ballistic Protection
    Ivancevic, Darko
    Smojver, Ivica
    Leko, Marko
    INAIR 2018: AVIATION ON THE GROWTH PATH, 2018, 35 : 190 - 199
  • [2] Hybrid calibration of aeronautical structures instrumented with strain-gages for load prediction
    Jason de Barros
    Flávio Luiz de Silva Bussamra
    Journal of the Brazilian Society of Mechanical Sciences and Engineering, 2021, 43
  • [3] Hybrid calibration of aeronautical structures instrumented with strain-gages for load prediction
    de Barros, Jason
    de Silva Bussamra, Flavio Luiz
    JOURNAL OF THE BRAZILIAN SOCIETY OF MECHANICAL SCIENCES AND ENGINEERING, 2021, 43 (12)
  • [4] Structural Health Monitoring on Industrial Structures Using a Combined Numerical and Experimental Approach
    Keilpflug, Fabian
    Kamenzky, Robert
    Alarcon, Daniel J.
    Mallareddy, Tarun Teja
    Blaschke, Peter
    TOPICS IN MODAL ANALYSIS & TESTING, VOL 8, 2020, : 263 - 277
  • [5] Ice Load Identification Method of Ship Structures and Experimental Verification
    Kong S.
    Cui H.
    Ji S.
    Zhongguo Jixie Gongcheng/China Mechanical Engineering, 2020, 31 (03): : 281 - 288
  • [6] An experimental verification of numerical models for the fracture and fatigue of welded structures
    Sedmak, Stojan
    Sedmak, Aleksander
    Arsic, Miodrag
    Tuma, Jelena Vojvodic
    MATERIALI IN TEHNOLOGIJE, 2007, 41 (04): : 173 - 178
  • [7] The behaviour of structures under fire - numerical model with experimental verification
    Toric, Neno
    Harapin, Alen
    Boko, Ivica
    STEEL AND COMPOSITE STRUCTURES, 2013, 15 (03): : 247 - 266
  • [8] Numerical and experimental flight verifications of a calibration matrix approach for load monitoring and temperature reconstruction and compensation
    Colombo, Luca
    Sbarufatti, Claudio
    Zielinski, Wojciech
    Dragan, Krzysztof
    Giglio, Marco
    AEROSPACE SCIENCE AND TECHNOLOGY, 2021, 118
  • [9] Probabilistic approach for active control of structures: Experimental verification
    Hwang, JS
    Min, KW
    Lee, SH
    Kim, HJ
    EARTHQUAKE ENGINEERING & STRUCTURAL DYNAMICS, 2005, 34 (03): : 207 - 225
  • [10] Piezoelectric Sensor Networks for Structural and Health Monitoring of Multi-Storey Frame Structures: Numerical and Experimental Verification
    Krommer, M.
    Zellhofer, M.
    STRUCTURAL HEALTH MONITORING 2010, 2010, : 634 - 640