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Wen-Liang Hsue
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2020 – today
- 2020
- [j10]Wen-Liang Hsue
:
Eigenvectors of Ordinary, Generalized, Centered and Offset Discrete Fourier Transforms Based on Lookup Table Methods: Efficiency and Approximation Uses. IEEE Trans. Signal Process. 68: 1776-1791 (2020) - [c11]Wen-Liang Hsue:
Enhancing Security of Double Random Phase Encryption Schemes Based on Discrete Fractional Fourier Transforms. ISCAS 2020: 1
2010 – 2019
- 2019
- [j9]Wen-Liang Hsue
:
Enhancing Security of Double Random Phase Encryption Schemes Based on Discrete Fractional Fourier Transforms. IEEE Trans. Circuits Syst. II Express Briefs 66-II(9): 1602-1606 (2019) - 2017
- [c10]Wei-Ting Chiu, Yu Tai, Wen-Liang Hsue:
Image watermarking based on discrete fractional fourier transforms with multiple parameters. ICNC-FSKD 2017: 2687-2693 - 2015
- [j8]Wen-Liang Hsue, Wei-Ching Chang:
Real Discrete Fractional Fourier, Hartley, Generalized Fourier and Generalized Hartley Transforms With Many Parameters. IEEE Trans. Circuits Syst. I Regul. Pap. 62-I(10): 2594-2605 (2015) - 2014
- [c9]Wen-Liang Hsue, Wei-Ching Chang:
Multiple-parameter real discrete fractional Fourier and Hartley transforms. DSP 2014: 694-698 - [c8]Fong-Maw Tsai, Wen-Liang Hsue:
Image Watermarking Based on Various Discrete Fractional Fourier Transforms. IWDW 2014: 135-144 - 2013
- [c7]Qi-Xuan Ong, Wen-Liang Hsue:
Inverse halftoning based on edge detection classification. APSIPA 2013: 1-4 - [c6]Wen-Liang Hsue, Soo-Chang Pei:
Closed-form eigenvectors of the discrete Fourier Transform. ISCAS 2013: 2597-2600 - 2012
- [c5]Wen-Liang Hsue, Soo-Chang Pei:
Rational-ordered discrete fractional Fourier transform. EUSIPCO 2012: 2124-2127 - 2011
- [c4]Wen-Liang Hsue, Soo-Chang Pei, Jian-Jiun Ding:
Efficient discrete fractional Hirschman optimal transform and its application. ICASSP 2011: 3604-3607
2000 – 2009
- 2009
- [j7]Soo-Chang Pei, Wen-Liang Hsue:
Random Discrete Fractional Fourier Transform. IEEE Signal Process. Lett. 16(12): 1015-1018 (2009) - [j6]Soo-Chang Pei, Wen-Liang Hsue, Jian-Jiun Ding:
DFT-Commuting Matrix With Arbitrary or Infinite Order Second Derivative Approximation. IEEE Trans. Signal Process. 57(1): 390-394 (2009) - 2008
- [j5]Soo-Chang Pei, Wen-Liang Hsue:
Tridiagonal Commuting Matrices and Fractionalizations of DCT and DST Matrices of Types I, IV, V, and VIII. IEEE Trans. Signal Process. 56(6): 2357-2369 (2008) - [j4]Soo-Chang Pei, Jian-Jiun Ding, Wen-Liang Hsue, Kuo-Wei Chang:
Generalized Commuting Matrices and Their Eigenvectors for DFTs, Offset DFTs, and Other Periodic Operations. IEEE Trans. Signal Process. 56(8-2): 3891-3904 (2008) - [c3]Soo-Chang Pei, Wen-Liang Hsue, Jian-Jiun Ding:
Coefficient-truncated higher-order commuting matrices of the discrete fourier transform. ICASSP 2008: 3545-3548 - 2006
- [j3]Soo-Chang Pei, Wen-Liang Hsue:
The multiple-parameter discrete fractional Fourier transform. IEEE Signal Process. Lett. 13(6): 329-332 (2006) - [j2]Soo-Chang Pei, Wen-Liang Hsue, Jian-Jiun Ding:
Discrete Fractional Fourier Transform Based on New Nearly Tridiagonal Commuting Matrices. IEEE Trans. Signal Process. 54(10): 3815-3828 (2006) - [c2]Wen-Liang Hsue, Soo-Chang Pei:
The Multiple-Parameter Discrete Fractional Fourier Transform and Its Application. ICASSP (3) 2006: 416-419 - 2005
- [c1]Soo-Chang Pei, Wen-Liang Hsue, Jian-Jiun Ding:
Discrete fractional Fourier transform based on new nearly tridiagonal commuting matrices. ICASSP (4) 2005: 385-388
1990 – 1999
- 1995
- [j1]Wen-Liang Hsue, Chien-Chung Yeh:
Wideband forward-backward beamforming and its efficient computation methods. Signal Process. 44(3): 285-297 (1995)
Coauthor Index

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