The time-reversal operator with virtual transducers: Application to far-field aberration correction

被引:13
作者
Robert, Jean-Luc [1 ]
Fink, Mathias [2 ]
机构
[1] Philips Res N Amer, Briarcliff Manor, NY 10510 USA
[2] Univ Paris 07, ESPCI, Lab Ondes & Acoust, F-75005 Paris, France
关键词
D O I
10.1121/1.3005560
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
The decomposition of the time-reversal operator (DORT) is a detection and focusing technique using an array of transmit receive transducers. It can extract Green's functions of scatterers in a medium. A variant consists in transmitting focused beams (FDORT). It is shown here that the FDORT method can be interpreted as the decomposition of a time-reversal operator between an array of virtual transducers located at the transmit beams' foci and the physical array. The receive singular vectors correspond to scatterers' Green's functions expressed in the physical array while the transmit singular vectors correspond to Green's functions expressed in the virtual array. The position of the virtual array can be changed by varying the position of the foci, thus offering different points of view. Parameters and performance of some transmit schemes are discussed. Appropriately positioning the virtual transducers can simplify some problems. One application is measuring and correcting aberration in the case of a far-field phase screen model. Placing the virtual transducers near the phase screen transforms the problem in a simpler near-field phase screen problem. (C) 2008 Acoustical Society of America. [DOI: 10.1121/1.3005560]
引用
收藏
页码:3659 / 3668
页数:10
相关论文
共 50 条
[31]   Split-ring-based metamaterial for far-field subwavelength focusing based on time reversal [J].
黄海燕 ;
丁帅 ;
王秉中 ;
臧锐 .
Chinese Physics B, 2014, (06) :203-209
[32]   Split-ring-based metamaterial for far-field subwavelength focusing based on time reversal [J].
Huang Hai-Yan ;
Ding Shuai ;
Wang Bing-Zhong ;
Zang Rui .
CHINESE PHYSICS B, 2014, 23 (06)
[33]   Exploiting spatiotemporal degrees of freedom for far-field subwavelength focusing using time reversal in fractals [J].
Dupre, Matthieu ;
Lemoult, Fabrice ;
Fink, Mathias ;
Lerosey, Geoffroy .
PHYSICAL REVIEW B, 2016, 93 (18)
[34]   Subwavelength Array of Planar Monopoles With Complementary Split Rings Based on Far-Field Time Reversal [J].
Ge, Guang-Ding ;
Wang, Bing-Zhong ;
Wang, Duo ;
Zhao, Deshuang ;
Ding, Shuai .
IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, 2011, 59 (11) :4345-4350
[35]   SUBWAVELENGTH ARRAY OF PLANAR TRIANGLE MONOPOLES WITH CROSS SLOTS BASED ON FAR-FIELD TIME REVERSAL [J].
Ge, G. -D. ;
Wang, D. ;
Wang, B. -Z. .
PROGRESS IN ELECTROMAGNETICS RESEARCH-PIER, 2011, 114 :429-441
[36]   EIGENVALUES OF THE FAR-FIELD OPERATOR AND INVERSE SCATTERING-THEORY [J].
COLTON, D ;
KRESS, R .
SIAM JOURNAL ON MATHEMATICAL ANALYSIS, 1995, 26 (03) :601-615
[37]   Singular value decomposition of the radiation operator - Application to model-order and far-field reduction [J].
Stupfel, Bruno ;
Morel, Yoann .
IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, 2008, 56 (06) :1605-1615
[38]   Matched-field localization using a virtual time-reversal processing method in shallow water [J].
Zhang TongWei ;
Yang KunDe ;
Ma YuanLiang .
CHINESE SCIENCE BULLETIN, 2011, 56 (08) :743-748
[39]   Matched-field localization using a virtual time-reversal processing method in shallow water [J].
ZHANG TongWei .
Science Bulletin, 2011, (08) :743-748
[40]   Far-field interferometric analysis and application of bubble [J].
Department of Physics, Hebei North College, Zhangjiakou 075000, China ;
不详 .
Guangxue Xuebao, 2007, 7 (1301-1304)