Haar wavelet operational matrix of fractional order integration and its applications in solving the fractional order differential equations Y Li, W Zhao Applied mathematics and computation 216 (8), 2276-2285, 2010 | 357 | 2010 |
Solving a nonlinear fractional differential equation using Chebyshev wavelets LI Yuanlu Communications in Nonlinear Science and Numerical Simulation 15 (9), 2284-2292, 2010 | 354 | 2010 |
Numerical solution of fractional differential equations using the generalized block pulse operational matrix Y Li, N Sun Computers & Mathematics with Applications 62 (3), 1046-1054, 2011 | 222 | 2011 |
Time-fractional diffusion equation for signal smoothing Y Li, F Liu, IW Turner, T Li Applied Mathematics and Computation 326, 108-116, 2018 | 81 | 2018 |
Parameter identification of fractional order linear system based on Haar wavelet operational matrix Y Li, X Meng, B Zheng, Y Ding Isa Transactions 59, 79-84, 2015 | 48 | 2015 |
Wavelet operational matrix method for solving the Riccati differential equation Y Li, N Sun, B Zheng, Q Wang, Y Zhang Communications in Nonlinear Science and Numerical Simulation 19 (3), 483-493, 2014 | 46 | 2014 |
Nonlinear diffusion filtering for peak-preserving smoothing of a spectrum signal Y Li, Y Ding, T Li Chemometrics and Intelligent Laboratory Systems 156, 157-165, 2016 | 27 | 2016 |
Quantized output feedback stabilization for nonlinear discrete-time systems subject to saturating actuator G Song, T Li, Y Li, J Lu Nonlinear Dynamics 83, 305-317, 2016 | 23 | 2016 |
Fractional-order derivative spectroscopy for resolving simulated overlapped Lorenztian peaks Y Li, H Tang, H Chen Chemometrics and Intelligent Laboratory Systems 107 (1), 83-89, 2011 | 23 | 2011 |
Time fractional super-diffusion model and its application in peak-preserving smoothing Y Li, M Jiang, F Liu Chemometrics and Intelligent Laboratory Systems 175, 13-19, 2018 | 18 | 2018 |
A method of approximate fractional order differentiation with noise immunity Y Li, C Pan, X Meng, Y Ding, H Chen Chemometrics and Intelligent Laboratory Systems 144, 31-38, 2015 | 17 | 2015 |
Spatial-fractional order diffusion filtering Y Li, M Jiang Journal of Mathematical Chemistry 56, 257-267, 2018 | 15 | 2018 |
Continuous wavelet transform to improve resolution of overlapped peaks based on curve fitting Y Li, Q Wang, N Sun, W Zhou, C Liu Spectroscopy Letters 46 (7), 507-515, 2013 | 15 | 2013 |
Haar Wavelet Based Implementation Method of the Non–integer Order Differentiation and its Application to Signal Enhancement HC Yuanlu Li, Chang Pan , XiaoMeng, Yaqing Ding Measurement Science Review 15 (3), 101-106, 2015 | 13 | 2015 |
A novel signal enhancement method for overlapped peaks with noise immunity Y Li, C Pan, Y Xue, X Meng, Y Ding Spectroscopy Letters 49 (4), 285-293, 2016 | 11 | 2016 |
Tree-like multiphase level set algorithm for image segmentation based on the Chan-Vese model. G Zheng, HN Wang, YL Li Dianzi Xuebao(Acta Electronica Sinica) 34 (8), 1508-1512, 2006 | 11 | 2006 |
Resolution method for overlapping peaks based on the fractional-order differential YL Li, SL Yu, G Zheng Science in China Series B: Chemistry 50 (6), 797-805, 2007 | 9 | 2007 |
Fractional-order differentiation of the Gaussian function for processing overlapped peaks Y Li Analytical Sciences 25 (11), 1339-1344, 2009 | 8 | 2009 |
A recursive least squares algorithm for frequency domain identification of non-integer order systems LI Yuan-lu, Y Sheng-lin, Z Gang Information and Control 36 (2), 171-175, 2007 | 6 | 2007 |
A Design Method of the Parameters of Fractional-order PI^ L^ a^ m^ b^ d^ a D^ m^ u Controller-Poles-Orders Searching Method H Yan, S Yu, Y Li INFORMATION AND CONTROL-SHENYANG- 36 (4), 445, 2007 | 6 | 2007 |