Journal of Computer Applications ›› 2023, Vol. 43 ›› Issue (3): 903-908.DOI: 10.11772/j.issn.1001-9081.2022010132
Special Issue: 多媒体计算与计算机仿真
• Multimedia computing and computer simulation • Previous Articles Next Articles
Kai LUO, Liang CHEN, Wei LIANG, Yongqiang CHEN()
Received:
2022-02-08
Revised:
2022-05-25
Accepted:
2022-06-06
Online:
2022-06-16
Published:
2023-03-10
Contact:
Yongqiang CHEN
About author:
LUO Kai, born in 1998, M. S. candidate. His research interests include ultrasonic Lamb wave non-destructive testing.Supported by:
通讯作者:
陈勇强
作者简介:
罗开(1998—),男,四川成都人,硕士研究生,主要研究方向:超声Lamb波无损检测基金资助:
CLC Number:
Kai LUO, Liang CHEN, Wei LIANG, Yongqiang CHEN. Sparse representation-based reconstruction algorithm for filtered back-projection ultrasound tomography[J]. Journal of Computer Applications, 2023, 43(3): 903-908.
罗开, 陈亮, 梁巍, 陈勇强. 基于稀疏表示的滤波反投影超声层析成像重建算法[J]. 《计算机应用》唯一官方网站, 2023, 43(3): 903-908.
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URL: https://www.joca.cn/EN/10.11772/j.issn.1001-9081.2022010132
参数 | 值 | 含义 |
---|---|---|
132.00 | 碳纤维板1方向上的杨氏模量 | |
10.50 | 碳纤维板2方向上的杨氏模量 | |
10.50 | 碳纤维板3方向上的杨氏模量 | |
5.65 | 碳纤维板12平面上的剪切模量 | |
5.65 | 碳纤维板13平面上的剪切模量 | |
3.38 | 碳纤维板23平面上的剪切模量 | |
0.24 | 碳纤维板12平面上的泊松比 | |
0.24 | 碳纤维板13平面上的泊松比 | |
0.59 | 碳纤维板23平面上的泊松比 | |
1 560.00 | 碳纤维板的密度 |
Tab. 1 Material properties of composite material T300/5208
参数 | 值 | 含义 |
---|---|---|
132.00 | 碳纤维板1方向上的杨氏模量 | |
10.50 | 碳纤维板2方向上的杨氏模量 | |
10.50 | 碳纤维板3方向上的杨氏模量 | |
5.65 | 碳纤维板12平面上的剪切模量 | |
5.65 | 碳纤维板13平面上的剪切模量 | |
3.38 | 碳纤维板23平面上的剪切模量 | |
0.24 | 碳纤维板12平面上的泊松比 | |
0.24 | 碳纤维板13平面上的泊松比 | |
0.59 | 碳纤维板23平面上的泊松比 | |
1 560.00 | 碳纤维板的密度 |
参数 | 参数设置 |
---|---|
材料种类 | T300/5208 |
层压层数 | 14 |
每层厚度 | 0.143 mm |
层压板大小 (圆板直径×平板厚度) | 160 mm × 2 mm |
铺层方向 | |
中心频率 | 200 kHz |
元素类型 | C3D8R |
网格大小 | 0.5 mm |
总时间 | 150 |
时间步长 | 0.025 |
Tab. 2 Model parameters
参数 | 参数设置 |
---|---|
材料种类 | T300/5208 |
层压层数 | 14 |
每层厚度 | 0.143 mm |
层压板大小 (圆板直径×平板厚度) | 160 mm × 2 mm |
铺层方向 | |
中心频率 | 200 kHz |
元素类型 | C3D8R |
网格大小 | 0.5 mm |
总时间 | 150 |
时间步长 | 0.025 |
算法 | PSNR/dB | SSIM/% | ESSIM/% | |||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|
缺陷1 | 缺陷2 | 缺陷3 | 缺陷4 | 缺陷1 | 缺陷2 | 缺陷3 | 缺陷4 | 缺陷1 | 缺陷2 | 缺陷3 | 缺陷4 | |
本文算法 | 21.46 | 24.68 | 24.18 | 24.46 | 93.95 | 94.74 | 96.96 | 97.65 | 63.99 | 60.78 | 64.08 | 66.52 |
线性插值 | 19.79 | 24.18 | 21.52 | 21.29 | 91.03 | 92.06 | 94.31 | 95.07 | 40.06 | 31.43 | 29.78 | 40.00 |
双三次样条插值 | 20.38 | 24.26 | 23.00 | 22.84 | 92.01 | 93.14 | 95.90 | 96.51 | 57.01 | 51.83 | 52.15 | 58.21 |
Tab. 3 Comparison of evaluation indexes of defect image restoration quality among three algorithms
算法 | PSNR/dB | SSIM/% | ESSIM/% | |||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|
缺陷1 | 缺陷2 | 缺陷3 | 缺陷4 | 缺陷1 | 缺陷2 | 缺陷3 | 缺陷4 | 缺陷1 | 缺陷2 | 缺陷3 | 缺陷4 | |
本文算法 | 21.46 | 24.68 | 24.18 | 24.46 | 93.95 | 94.74 | 96.96 | 97.65 | 63.99 | 60.78 | 64.08 | 66.52 |
线性插值 | 19.79 | 24.18 | 21.52 | 21.29 | 91.03 | 92.06 | 94.31 | 95.07 | 40.06 | 31.43 | 29.78 | 40.00 |
双三次样条插值 | 20.38 | 24.26 | 23.00 | 22.84 | 92.01 | 93.14 | 95.90 | 96.51 | 57.01 | 51.83 | 52.15 | 58.21 |
1 | ADDEPALLI S, ZHAO Y F, ROY R, et al. Non-destructive evaluation of localised heat damage occurring in carbon composites using thermography and thermal diffusivity measurement[J]. Measurement, 2019, 131: 706-713. 10.1016/j.measurement.2018.09.040 |
2 | ZHU G H, SUN G Y, YU H, et al. Energy absorption of metal, composite and metal/composite hybrid structures under oblique crushing loading[J]. International Journal of Mechanical Sciences, 2018, 135: 458-483. 10.1016/j.ijmecsci.2017.11.017 |
3 | BOUBENIA R, ROSENKRANTZ E, DESPETIS F, et al. Particulate metal composites as backing for ultrasonic transducers for continuous nondestructive measurements at moderate and high temperatures[J]. IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control, 2020, 67(10): 2164-2175. 10.1109/tuffc.2020.2998768 |
4 | ZHAO J, REN W B, RUAN X H, et al. Experimental study on the seismic performance of columns reinforced by the CFRP bar and sheet[J]. Applied Composite Materials, 2021, 28(4): 1291-1313. 10.1007/s10443-021-09914-x |
5 | YANG L, CHEN H X. Fault diagnosis of gearbox based on RBF-PF and particle swarm optimization wavelet neural network[J]. Neural Computing and Applications, 2019, 31(9): 4463-4478. 10.1007/s00521-018-3525-y |
6 | 焦敬品,刘芸,吴斌,等. 金属板结构疲劳损伤二倍频兰姆波检测方法研究[J]. 实验力学, 2021, 36(2): 157-166. 10.7520/1001-4888-20-072 |
JIAO J P, LIU Y, WU B, et al. Fatigue damage detection in metal plates using second harmonic Lamb waves[J]. Journal of Experimental Mechanics, 2021, 36(2): 157-166. 10.7520/1001-4888-20-072 | |
7 | 严宏,周丽. 基于损伤存在概率成像方法的复合材料结构损伤识别[J]. 振动与冲击, 2012, 31(13): 76-80. 10.3969/j.issn.1000-3835.2012.13.016 |
YAN H, ZHOU L. Damage identification of composite structures based on reconstruction algorithm for probabilistic inspection of damage[J]. Journal of Vibration and Shock, 2012, 31(13): 76-80. 10.3969/j.issn.1000-3835.2012.13.016 | |
8 | WAN X, ZHANG Q, XU G H, et al. Numerical simulation of nonlinear Lamb waves used in a thin plate for detecting buried micro-cracks[J]. Sensors, 2014, 14(5): 8528-8546. 10.3390/s140508528 |
9 | CHEN L, XIAO Q, LIANG W, et al. A time-of-flight revising approach to improve the image quality of Lamb wave tomography for the detection of defects in composite panels[J]. Science and Engineering of Composite Materials, 2018, 25(3): 587-592. 10.1515/secm-2015-0399 |
10 | BINGHAM J, HINDERS M. Lamb wave characterization of corrosion-thinning in aircraft stringers: experiment and three-dimensional simulation[J]. The Journal of the Acoustical Society of America, 2009, 126(1): 103-113. 10.1121/1.3132505 |
11 | WRIGHT W, HUTCHINS D, JANSEN D, et al. Air-coupled Lamb wave tomography[J]. IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control, 1997, 44(1): 53-59. 10.1109/58.585190 |
12 | LEONARD K R, HIDERS M K. Guided wave helical ultrasonic tomography of pipes[J]. The Journal of the Acoustical Society of America, 2003, 114(2): 767-774. 10.1121/1.1593068 |
13 | SUGINO C, RUZZENE M, ERTURK A. Experimental and computational investigation of guided waves in a human skull[J]. Ultrasound in Medicine and Biology, 2021, 47(3): 787-798. 10.1016/j.ultrasmedbio.2020.11.019 |
14 | HUO H D, HE J J, GUAN X F. A Bayesian fusion method for composite damage identification using Lamb wave[J]. Structural Health Monitoring, 2021, 20(5): 2337-2359. 10.1177/1475921720945000 |
15 | ZHAO C W, TANWEER S, LI J, et al. Nonlinear guided wave tomography for detection and evaluation of early-life material degradation in plates[J]. Sensors, 2021, 21(16): No.5498. 10.3390/s21165498 |
16 | ZIELIŃSKA M, RUCKA M. Imaging of increasing damage in steel plates using Lamb waves and ultrasound computed tomography[J]. Materials, 2021, 14(17): No.5114. 10.3390/ma14175114 |
17 | FREEMAN W T, PASZTOR E C, CARMICHAEL O T. Learning low-level vision[J]. International Journal of Computer Vision, 2000, 40(1): 25-47. |
18 | SUN J, ZHENG N N, TAO H, et al. Image hallucination with primal sketch priors[C]// Proceedings of the 2003 IEEE Computer Society Conference on Computer Vision and Pattern Recognition. Piscataway: IEEE, 2003: 729-736. 10.1109/cvpr.2003.1211330 |
19 | CHANG H, YEUNG D Y, XIONG Y M. Super-resolution through neighbor embedding[C]// Proceedings of the 2004 IEEE Computer Society Conference on Computer Vision and Pattern Recognition, Volume I. Piscataway: IEEE, 2004: I-275- I-282. 10.1109/cvpr.2004.1314997 |
20 | YANG J C, WRIGHT J, HUANG T S, et al. Image super-resolution via sparse representation[J]. IEEE Transactions on Image Processing, 2010, 19(11): 2861-2873. 10.1109/tip.2010.2050625 |
21 | YOU J S, ZENG G L. Hilbert transform based FBP algorithm for fan-beam CT full and partial scans[J]. IEEE Transactions on Medical Imaging, 2007, 26(2): 190-199. 10.1109/tmi.2006.889705 |
22 | KATARE K K, CHANDRAVANSHI S, SHARMA A, et al. Anisotropic metasurface-based beam-scanning dual-polarized fan-beam integrated antenna system[J]. IEEE Transactions on Antennas and Propagation, 2019, 67(12): 7204-7215. 10.1109/tap.2019.2930128 |
23 | TAO X, ZHANG H, WANY Y B, et al. VVBP-tensor in the FBP algorithm: its properties and application in low-dose CT reconstruction[J]. IEEE Transactions on Medical Imaging, 2020, 39(3): 764-776. 10.1109/tmi.2019.2935187 |
24 | Zeng G L, DIVKOVIC Z. An extended Bayesian-FBP algorithm[J]. IEEE Transactions on Nuclear Science, 2016, 63(1): 151-156. 10.1109/tns.2015.2501980 |
25 | WANG Z, BOVIK A C, SHEIKH H R, et al. Image quality assessment: from error visibility to structural similarity[J]. IEEE Transactions on Image Processing, 2004, 13(4): 600-612. 10.1109/tip.2003.819861 |
26 | ZHANG X D, FENG X C, WANG W W, et al. Edge strength similarity for image quality assessment[J]. IEEE Signal Processing Letters, 2013, 20(4): 319-322. 10.1109/lsp.2013.2244081 |
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