1 |
VUJEVIC S , LOVRIC D . Inverse continuous numerical fourier transform for transient analysis of electromagnetic phenomena[J]. IEEE Trans.on Electromagnetic Compatibility, 2015, 57 (5): 1149- 1154.
doi: 10.1109/TEMC.2015.2417654
|
2 |
BOASHASH B , SUCIC V . Resolution measure criteria for the objective assessment of the performance of quadratic time-frequency distributions[J]. IEEE Trans.on Signal Processing, 2003, 51 (5): 1253- 1263.
doi: 10.1109/TSP.2003.810300
|
3 |
LIU K F , ZHANG Z Q . Dynamic response of an inhomogeneous elastic pile in a multilayered saturated soil to transient torsional load[J]. Mathematical Problems in Engineering, 2021, 2021 (3)
doi: 10.1155/2021/5528237
|
4 |
MO S X , LV Z P , HAN K L , et al. Transmission line modeling and algorithm analysis considering parameter asymmetry and transient high-frequency components[J]. Journal of Electrical Engineering and Technology, 2021, 16 (2): 711- 723.
doi: 10.1007/s42835-020-00619-y
|
5 |
BRAUN S , RUSSER P . A low-noise multiresolution high-dynamic ultra-broad-band time-domain EMI measurement system[J]. IEEE Trans.on Microwave Theory and Techniques, 2005, 53 (11): 3354- 3363.
doi: 10.1109/TMTT.2005.855745
|
6 |
GENG X , ZHAO L F . All-optical analog to digital converter based on nonlinear photonic crystal ring resonators[J]. Photo-nics and Nanostructures-Fundamentals and Applications, 2020, 41, 100817.
|
7 |
BRAUN S , DONAUER T , RUSSER P . A real-time time-domain EMI measurement system for full-compliance measurements according to CISPR 16-1-1[J]. IEEE Trans.on Electromagnetic Compatibility, 2008, 50 (2): 259- 267.
doi: 10.1109/TEMC.2008.918980
|
8 |
PESENTE J , MORETO M , RAMOS R A , et al. A procedure to automate the assessment of generator protection[J]. Electric Power Systems Research, 2021, 196 (4): 107247.
|
9 |
AZPURUA M A , POUS M , CAKIR S , et al. Improving time-domain EMI measurements through digital signal processing[J]. IEEE Electromagnetic Compatibility Magazine, 2015, 4 (2): 82- 91.
doi: 10.1109/MEMC.2015.7204056
|
10 |
MA A , POUS M , SILVA F . Decomposition of electromagnetic interferences in the time-domain[J]. IEEE Trans.on Electromagnetic Compatibility, 2016, 58 (2): 385- 392.
doi: 10.1109/TEMC.2016.2518302
|
11 |
MILLER E K , LANDT J A . Direct time-domain techniques for transient radiation and scattering from wires[J]. Proceedings of the IEEE, 1980, 68 (11): 1396- 1423.
doi: 10.1109/PROC.1980.11881
|
12 |
JINNO S , KITORA S , TOKI H , et al. The time domain numerical method of three-dimensional conductors including radiation with lumped parameter circuit[J]. Scientific Reports, 2021, 11 (1): 4598.
doi: 10.1038/s41598-021-83916-4
|
13 |
YANG X, WU X X, QIU J, et al. Study on the spatial radiation EMI characteristics of GIS caused by disconnector operation[C]//Proc. of the 5th International Conference on Electric Power Equipment-Switching Technology, 2019.
|
14 |
BANSHCHIKOVA M A , AVDYUSHEV V A , KUZMIN A K . Technique for conducting a space experiment with auroral imagers in satellite orbits[J]. Cosmic Research, 2020, 58 (5): 357- 364.
doi: 10.1134/S0010952520050019
|
15 |
AHMED S , LI E P . Application of singular value decomposition on FDTD simulation result-a novel approach for modal analysis of complex electromagnetic problems[J]. IEEE Microwave & Wireless Components Letters, 2004, 14 (11): 519- 521.
|
16 |
AHMED S , LI E P . Modal analysis of microstrip lines using singular value decomposition analysis of FDTD simulations[J]. IEEE Trans.on Electromagnetic Compatibility, 2008, 50 (3): 687- 696.
doi: 10.1109/TEMC.2008.927926
|
17 |
MEZI I . Spectral properties of dynamical systems, model reduction and decompositions[J]. Nonlinear Dynamics, 2006, 41 (1/3): 309- 325.
|
18 |
SIKHA O K , SOMAN K P . Dynamic mode decomposition based salient edge/region features for content based image retrieval[J]. Multimedia Tools and Applications, 2021, 80 (10): 15937- 15958.
doi: 10.1007/s11042-020-10315-8
|
19 |
SACCO F , OSTILLA-MONICO R , VERZICCO R . Dynamic mode decomposition analysis of coherent structures in rotating plane Couette flow[J]. Journal of Physics: Conference Series, 2020, 1522 (1): 012012.
doi: 10.1088/1742-6596/1522/1/012012
|
20 |
BRUNTON S L , BRUNTON B W , PROCTOR J L , et al. Chaos as an intermittently forced linear system[J]. Nature Communications, 2016, 8 (1): 19.
|
21 |
BAROCIO E , PAL B C , THORNHILL N F , et al. A dynamic mode decomposition framework for global power system oscillation analysis[J]. IEEE Trans.on Power Systems, 2014, 30 (6): 2902- 2912.
|
22 |
BRUNTON B W , JOHNSON L A , OJEMANN J G , et al. Extracting spatial-temporal coherent patterns in large-scale neural recordings using dynamic mode decomposition[J]. Journal of Neuroscience Methods, 2016, 258, 1- 15.
doi: 10.1016/j.jneumeth.2015.10.010
|
23 |
YE Z X , JIANG Y Y , TIAN Z N , et al. Analysis of synthetic jet PIV experiment based on dynamic mode decomposition[J]. International Journal of Modern Physics B, 2020, 36 (14/16): 2040103.
|
24 |
寇家庆, 张伟伟. 动力学模态分解及其在流体力学中的应用[J]. 空气动力学学报, 2018, 36 (2): 163- 179.
|
|
KOU J Q , ZHANG W W . Dynamic modal decomposition and its application in fluid mechanics[J]. Journal of Aerodynamics, 2018, 36 (2): 163- 179.
|
25 |
KUTZ J N, XING F, BRUNTON S L, et al. Multi-resolution dynamic mode decomposition for foreground/background separation and object tracking[C]//Proc. of the IEEE International Conference on Computer Vision Workshop, 2015.
|
26 |
SHI D , GAO Y G . A new method for identifying electromagnetic radiation sources using backpropagation neural network[J]. IEEE Trans.on Electromagnetic Compatibility, 2013, 55 (5): 842- 848.
doi: 10.1109/TEMC.2012.2237176
|
27 |
BILAL M , RIZWAN M , SALEEM S , et al. Automatic seizure detection using multi-resolution dynamic mode decomposition[J]. IEEE Access, 2019, 7, 61180- 61194.
doi: 10.1109/ACCESS.2019.2915609
|
28 |
SIKHA O K , SOMAN K P . Multi-resolution dynamic mode decomposition-based salient region detection in noisy images[J]. Signal Image & Video Processing, 2019, 14 (9): 167- 175.
|
29 |
DYLEWSKY D , TAO M , KUTZ J N . Dynamic mode decomposition for multiscale nonlinear physics[J]. Physical Review E, 2019, 99 (6): 063311.
doi: 10.1103/PhysRevE.99.063311
|
30 |
NATHAN J K , STEVEN L B , DIRK M L , et al. On dynamic mode decomposition: theory and applications[J]. Journal of Computational Dynamics, 2015, 1 (2): 391- 421.
|
31 |
SEDDI G I Z , AHMADZADEH M R , TABAN M R . Radar signals classification using energy-time-frequency distribution features[J]. IET Radar, Sonar & Navigation, 2020, 14 (5): 707- 715.
|
32 |
CHOI H I , WILLIAMS W J . Improved time-frequency representation of multicomponent signals using exponential kernels[J]. IEEE Trans.on Acoustics Speech & Signal Processing, 2002, 37 (6): 862- 871.
|
33 |
YUAN Y J , HUANG Z T , HAO W , et al. Specific emitter identification based on Hilbert-Huang transform-based time-frequency-energy distribution features[J]. Communications IET, 2014, 8 (13): 2404- 2412.
doi: 10.1049/iet-com.2013.0865
|
34 |
LI P , JIANG L J . Modeling radiated emissions through shielding boxes based on the tangential electrical field samplings over openings[J]. IEEE Trans.on Electromagnetic Compatibility, 2013, 55 (6): 1140- 1146.
doi: 10.1109/TEMC.2013.2251420
|