[1] |
LU J, WAKAI K, TAKAHASHI S, et al. Acoustic computer tomographic pyrometry for two-dimensional measurement of gases taking into account the effect of refraction of sound wave paths[J]. Measurement Science and Technology, 2000, 11(6): 692-697.
|
[2] |
BARTH M, RAABE A. Acoustic tomographic imaging of temperature and flow fields in air[J]. Measurement Science and Technology, 2011, 22(3): 1-13.
|
[3] |
沈国清, 安连锁, 姜根山, 等. 基于声学CT重建炉膛二维温度场的仿真研究[J]. 中国电机工程学报, 2007, 27(2): 11-14.
|
|
SHEN G Q, AN L S, JIANG G S, et al. Simulation of two-dimensional temperature field in furnace based on acoustic computer tomography[J]. Proceedings of the CSEE, 2007, 27(2): 11-14.
|
[4] |
王然, 安连锁, 沈国清, 等. 基于正则化SVD算法的三维温度场声学重建[J]. 计算物理, 2015, 32(2): 195-201.
|
|
WANG R, AN L S, SHEN G Q, et al. Three-dimensional temperature field reconstruction with acoustics based on regularized SVD algorithm[J]. Chinese Journal of Computational Physics, 2015, 32(2): 195-201.
|
[5] |
FAN W, CHEN C A, CHEN Y. Calibration of an acoustic system for measuring 2-D temperature distribution around hydrothermal vents[J]. Ultrasonics, 2013, 53: 897-906.
|
[6] |
颜华, 陈冠男, 杨奇, 等. 声学CT复杂温度场重建研究[J]. 声学学报, 2012, 37(4): 370-377.
|
|
YAN H, CHEN G N, YANG Q, et al. Research on complicated temperature field reconstruction based on acoustic CT[J]. Acta Acustica, 2012, 37(4): 370-377.
|
[7] |
颜华, 庄蔷, 王晓宁. 储粮温度分布声学CT重建仿真[J]. 沈阳工业大学学报, 2015, 37(6): 662-666.
|
|
YAN H, ZHUANG Q, WANG X N. Simulation on acoustic CT reconstruction of temperature distribution of stored grains [J]. Journal of Shenyang University of Technology, 2015, 37(6): 662-666.
|
[8] |
张华宇, 谢凤琴, 李强. 基于超声波飞行时间的空气温度场重建[J]. 应用声学, 2012, 31(2): 93-97.
|
|
ZHANG H Y, XIE F Q, LI Q. Temperature field reconstruction system based on ultrasonic time-of-flight technique[J]. Applied Acoustics, 2012, 31(2): 93-97.
|
[9] |
TIKHONOV A N, ARSENIN V Y. Solution of Ill-posed Problems[M]. New York: V H Winston & Sons Inc., 1977.
|
[10] |
肖庭延, 于慎根, 王彦飞. 反问题的数值解法[M]. 北京: 科学出版社, 2003.
|
|
XIAO T Y, YU S G, WANG Y F. Numerical Solution of Inverse Problem[M]. Beijing: Science Press, 2003.
|
[11] |
LANDWEBER L. An iteration formula for Fredholm integral equations of the first kind[J]. American Journal of Mathematics, 1951, 73(3): 96-104.
|
[12] |
李芝兰, 颜华, 陈冠男. 基于修正Landweber迭代的声学温度场重建算法[J]. 沈阳工业大学学报, 2008, 30(1): 90-93.
|
|
LI Z L, YAN H, CHEN G N. Acoustic temperature field reconstruction algorithm based on modified Landweber iterative method[J]. Journal of Shenyang University of Technology, 2008, 30(1): 90-93.
|
[13] |
BENDER M, DICK G, GE M R, et al. Development of a GNSS water vapour tomography system using algebraic reconstruction techniques[J]. Advances in Space Research, 2011, (47): 1704-1720.
|
[14] |
LI Y Y, HERMAN C. Possibilities and limitations of the ART-Sample algorithm for reconstruction of 3D temperature fields and the influence of opaque obstacles[J]. International Journal of Heat and Mass Transfer, 2013, (62): 680-696.
|
[15] |
HAO J N, YIN W L, ZHAO Q, et al. Preconditioning of projected SIRT algorithm for electro-magnetic tomography[J]. Flow Measurement and Instrumentation, 2013, 29(29): 39-44.
|
[16] |
ANDERSEN A H, KAK A C. Simultaneous algebraic reconstruction technique (SART): a superior implementation of the ART algorithm[J]. Ultrasonic Imaging, 1984, (6): 81-94.
|
[17] |
WAN X H, ZHANG F, CHU Q, et al. Three-dimensional reconstruction using an adaptive simultaneous algebraic reconstruction technique in electron tomography[J]. Journal of Structural Biology, 2011, (175): 277-287.
|
[18] |
杜功焕, 朱哲民, 龚秀芬. 声学基础[M]. 南京: 南京大学出版社, 2012.
|
|
DU G H, ZHU Z M, GONG X F. Acoustic Basis[M]. Nanjing: Nanjing University Press, 2012.
|
[19] |
蔡勇, 潘宏, 周艳, 等. 海底热液口温度场高精度声学测量方法研究[J]. 仪器仪表学报, 2012, 33(3): 649-654.
|
|
CAI Y, PAN H, ZHOU Y, et al. Study on high precision acoustic measurement techniques for determining temperature fields around seafloor hydrothermal vents[J]. Chinese Journal of Scientific Instrument, 2012, 33(3): 649-654.
|
[20] |
毛洁, 吴友凤, 樊炜, 等. 声学法深海热液温度场测量及重建算法研究[J]. 仪器仪表学报, 2010, 31(10): 2339-2344.
|
|
MAO J, WU F Y, FAN W, et al. Acoustic temperature field measurement in deep-sea hydrothermal vents and reconstruction algorithm[J]. Chinese Journal of Scientific Instrument, 2010, 31(10): 2339-2344.
|
[21] |
HUBER P J. Robust Statistics[M]. New York: John Wiley&Sons, 1981.
|
[22] |
王彤. 线性回归模型的稳健估计及多个异常点诊断方法研究[D]. 西安: 第四军医大学, 2000.
|
|
WANG T. Methods on robust estimation and detection of multiple outliers in linear regression[D]. Xi'an: The Fourth Military Medical University, 2000.
|
[23] |
METROPOLIS N, ROSENBLUTH A W, ROSENBLUTH M N, et al. Equation of state calculations by fast computing machines[J]. The Journal of Chemical Physics, 1953, 21(6): 1087.
|
[24] |
KIRKPATRICK S, GELATT JR. C D, VECCHI M P. Optimization by simulated annealing[J]. Science, 1983, 220(4598): 671-680.
|
[25] |
傅文渊, 凌朝东. 布朗运动模拟退火算法[J]. 计算机学报, 2014, 37(6): 1301-1308.
|
|
FU W Y, LING C D. Brownian motion based simulated annealing algorithm[J]. Chinese Journal of Computers, 2014, 37(6): 1301-1308.
|
[26] |
张长兴, 王德水, 刘玉峰, 等. 模拟退火算法在岩土热物性参数确定中的应用[J]. 化工学报, 2015, 66(2): 545-552.
|
|
ZHANG C X, WANG D S, LIU Y F, et al. Application of simulated annealing algorithm for determining parameters of rock-soil thermal properties[J]. CIESC Journal, 2015, 66(2): 545-552.
|
[27] |
武良丹, 张晓凤, 贺西平. 基于模拟退火算法的超声回波参数估计[J]. 应用声学, 2007, 26(5): 313-317.
|
|
WU L D, ZHANG X F, HE X P. Parameter estimation of ultrasonic echo based on simulated annealing method[J]. Applied Acoustics, 2007, 26(5): 313-317.
|
[28] |
史峰, 王辉, 郁磊, 等. MATLAB智能算法30个案例分析[M]. 北京: 北京航空航天大学出版社, 2011.
|
|
SHI F, WANG H, YU L, et al. Analysis of MATLAB Intelligent Algorithm in 30 Cases [M]. Beijing: Beijing University of Aeronautics and Astronautics Press, 2011.
|
[29] |
HUANG G B, ZHU Q Y, SIEW C K. Extreme learning machine: theory and applications[J]. Neurocomputing, 2006, 70(1/2/3): 489-501.
|
[30] |
王保义, 赵硕, 张少敏. 基于云计算和极限学习机的分布式电力负荷预测算法[J]. 电网技术, 2014, 38(2): 526-531.
|
|
WANG B Y, ZHAO S, ZHANG S M. A distributed load forecasting algorithm based on cloud computing and extreme learning machine[J]. Power System Technology, 2014, 38(2): 526-531.
|
[31] |
赵立杰, 袁德成, 柴天佑. 基于多分类概率极限学习机的污水处理过程操作工况识别[J]. 化工学报, 2012, 63(10): 3173-3182.
|
|
ZHAO L J, YUAN D C, CHAI T Y. Identification of wastewater operational conditions based on multi-classification probabilistic extreme learning machine[J]. CIESC Journal, 2012, 63(10): 3173-3182.
|
[32] |
颜华, 王善辉, 刘丽钧, 等. 一种考虑声线弯曲的温度场重建算法[J]. 声学学报, 2014, 39(6): 705-713.
|
|
YAN H, WANG S H, LIU L J, et al. A reconstruction algorithm of temperature field taking into account the bending of sound wave paths[J]. Acta Acustica, 2014, 39(6): 705-713.
|