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Lokendra K. Balyan
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2020 – today
- 2024
- [j13]Harvindra Singh, L. K. Balyan, A. K. Mittal, Parul Saini:
A numerically robust and stable time-space pseudospectral approach for multidimensional generalized Burgers-Fisher equation. Math. Comput. Simul. 225: 177-194 (2024) - 2023
- [j12]Himanshu Singh, Anil Kumar, Lokendra K. Balyan:
Fractional-order Differintegral based multiscale Retinex inspired texture dependent quality enhancement for remotely sensed images. Multim. Tools Appl. 82(2): 1593-1631 (2023) - [j11]Parul Saini, L. K. Balyan, Anil Kumar, Girish Kumar Singh:
Comparative analysis of post-processing on spectral collocation methods for non-smooth functions. Signal Image Video Process. 17(1): 173-181 (2023) - [i1]Harvindra Singh, Lokendra K. Balyan, A. K. Mittal, Parul Saini:
A Numerically Robust and Stable Time-Space Pseudospectral Approach for Generalized Burgers-Fisher Equation. CoRR abs/2306.09988 (2023) - 2022
- [j10]Parul Saini, L. K. Balyan, Anil Kumar, Girish Kumar Singh:
Modification of Chebyshev Pseudospectral Method to Minimize the Gibbs Oscillatory Behaviour in Resynthesizing Process. Circuits Syst. Signal Process. 41(11): 6238-6265 (2022) - [j9]A. K. Mittal, L. K. Balyan:
An improved pseudospectral approximation of coupled nonlinear partial differential equations. Int. J. Comput. Sci. Math. 15(2): 155-167 (2022) - [j8]Himanshu Singh, Anil Kumar, L. K. Balyan, Heung-No Lee:
Spatial Entropy Quartiles-Based Texture-Aware Fractional-Order Unsharp Masking for Visibility Enhancement of Remotely Sensed Images. IEEE Trans. Syst. Man Cybern. Syst. 52(4): 2275-2288 (2022) - 2020
- [j7]N. Sajwan, Ila Sharma, Anil Kumar, L. K. Balyan:
Performance of Multiplierless FIR Filter Based on Directed Minimal Spanning Tree: A Comparative Study. Circuits Syst. Signal Process. 39(11): 5776-5800 (2020) - [j6]L. K. Balyan, A. K. Mittal, M. Kumar, M. Choube:
Stability analysis and highly accurate numerical approximation of Fisher's equations using pseudospectral method. Math. Comput. Simul. 177: 86-104 (2020)
2010 – 2019
- 2019
- [j5]Himanshu Singh, Anil Kumar, L. K. Balyan, Heung-No Lee:
Fractional-Order Integration Based Fusion Model for Piecewise Gamma Correction Along With Textural Improvement for Satellite Images. IEEE Access 7: 37192-37210 (2019) - [j4]Himanshu Singh, Anil Kumar, L. K. Balyan, Girish Kumar Singh:
A novel optimally weighted framework of piecewise gamma corrected fractional order masking for satellite image enhancement. Comput. Electr. Eng. 75: 245-261 (2019) - [j3]Himanshu Singh, Anil Kumar, L. K. Balyan, Heung-No Lee:
Optimally sectioned and successively reconstructed histogram sub-equalization based gamma correction for satellite image enhancement. Multim. Tools Appl. 78(14): 20431-20463 (2019) - 2018
- [j2]Himanshu Singh, Anil Kumar, L. K. Balyan, Girish Kumar Singh:
Swarm intelligence optimized piecewise gamma corrected histogram equalization for dark image enhancement. Comput. Electr. Eng. 70: 462-475 (2018) - [c5]Himanshu Singh, Anil Kumar, L. K. Balyan:
Robustly Clipped Sub-equalized Histogram-Based Cosine-Transformed Energy-Redistributed Gamma Correction for Satellite Image Enhancement. CVIP (2) 2018: 483-495 - [c4]I. Sharma, Anil Kumar, L. K. Balyan:
Design of Multiplierless M-channel Cosine Modulated Filterbank using Hybrid CSE Technique. DSP 2018: 1-5 - [c3]Himanshu Singh, Anil Kumar, L. K. Balyan, Heung-No Lee:
Fuzzified Histogram Equalization based Gamma Corrected Cosine Transformed Energy Redistribution for Image Enhancement. DSP 2018: 1-5 - 2017
- [c2]Ila Sharma, Anil Kumar, L. K. Balyan, Girish Kumar Singh:
A new hybrid CSE technique for multiplier-less FIR filter. DSP 2017: 1-5 - [c1]Himanshu Singh, Anil Kumar, L. K. Balyan, Girish Kumar Singh:
A novel optimally gamma corrected intensity span maximization approach for dark image enhancement. DSP 2017: 1-5 - 2012
- [j1]Lokendra K. Balyan, Pravir K. Dutt, R. K. S. Rathore:
Least squares h-p spectral element method for elliptic eigenvalue problems. Appl. Math. Comput. 218(19): 9596-9613 (2012)
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last updated on 2024-10-07 21:23 CEST by the dblp team
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