NUFFT- & GPU-Based Fast Imaging of Vegetation

被引:19
作者
Capozzoli, Amedeo [1 ]
Curcio, Claudio [1 ]
Di Vico, Antonio [1 ]
Liseno, Angelo [1 ]
机构
[1] Univ Naples Federico II, Dipartimento Ingn Biomed Elettron & Telecomunicaz, I-80125 Naples, Italy
关键词
imaging of vegetation; Non-Uniform FFT (NUFFT); Graphics Processing Unit (GPU); parallel processing; Filtered Backprojection (FBP); radon transform inversion; CUDA; polarimetric; temporal decorrelation; indoor setup; DIFFRACTION TOMOGRAPHY; TEMPORAL DECORRELATION; SAR; RADAR; RECONSTRUCTION; ALGORITHMS; MIGRATION; COMPUTATION;
D O I
10.1587/transcom.E94.B.2092
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
We develop an effective algorithm, based on the filtered backprojection (FBP) approach, for the imaging of vegetation. Under the FBP scheme, the reconstruction amounts at a non-trivial Fourier inversion, since the data are Fourier samples arranged on a non-Cartesian grid. The computational issue is efficiently tackled by Non-Uniform Fast Fourier Transforms (NUFFTs), whose complexity grows asymptotically as that of a standard FFT. Furthermore, significant speed-ups, as compared to fast CPU implementations, are obtained by a parallel versions of the NUFFT algorithm, purposely designed to be run on Graphic Processing Units (GPUs) by using the CUDA language. The performance of the parallel algorithm has been assessed in comparison to a CPU-multicore accelerated, Mat lab implementation of the same routine, to other CPU-multicore accelerated implementations based on standard FFT and employing linear, cubic, spline and sinc interpolations and to a different, parallel algorithm exploiting a parallel linear interpolation stage. The proposed approach has resulted the most computationally convenient. Furthermore, an indoor, polarimetric experimental setup is developed, capable to isolate and introduce, one at a time, different non-idealities of a real acquisition, as the sources (wind, rain) of temporal decorrelation. Experimental far-field polarimetric measurements on a thuja plicata (western redcedar) tree point out the performance of the set up algorithm, its robustness against data truncation and temporal decorrelation as well as the possibility of discriminating scatterers with different features within the investigated scene.
引用
收藏
页码:2092 / 2103
页数:12
相关论文
共 53 条
[1]  
[Anonymous], 2016, Programming massively parallel processors: a hands-on approach
[2]  
[Anonymous], RADAR TARGET IMAGING
[3]  
Bennett JC, 2000, INT GEOSCI REMOTE SE, P2313, DOI 10.1109/IGARSS.2000.858393
[4]   Computation of the response function in chirp-pulse microwave computerized tomography [J].
Bertero, M ;
Conte, F ;
Miyakawa, M ;
Piana, M .
INVERSE PROBLEMS, 2001, 17 (03) :485-500
[5]   Lower bounds for the multiplicative complexity of matrix multiplication [J].
Bläser, M .
COMPUTATIONAL COMPLEXITY, 1999, 8 (03) :203-226
[6]  
Blom M, 2005, INT GEOSCI REMOTE SE, P3352
[7]   Reconstruction in diffraction ultrasound tomography using nonuniform FFT [J].
Bronstein, MM ;
Bronstein, AM ;
Zibulevsky, M ;
Azhari, H .
IEEE TRANSACTIONS ON MEDICAL IMAGING, 2002, 21 (11) :1395-1401
[8]   SAR DATA FOCUSING USING SEISMIC MIGRATION TECHNIQUES [J].
CAFFORIO, C ;
PRATI, C ;
ROCCA, E .
IEEE TRANSACTIONS ON AEROSPACE AND ELECTRONIC SYSTEMS, 1991, 27 (02) :194-207
[9]  
Capozzoli Amedeo, 2010, Atti della Fondazione Giorgio Ronchi, V65, P367
[10]   Field sampling and field reconstruction: A new perspective [J].
Capozzoli, A. ;
Curcio, C. ;
Liseno, A. ;
Vinetti, P. .
RADIO SCIENCE, 2010, 45