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Chang Shu 0003
Person information
- affiliation: Department of Electrical and Computer Engineering, George Mason University, Fairfax, VA, USA
Other persons with the same name
- Chang Shu — disambiguation page
- Chang Shu 0001 — National Research Council Canada, Institute for Information Technology, Ottawa, Canada
- Chang Shu 0002 — Department of Mechanical Engineering, National University of Singapore, Singapore
- Chang Shu 0004 — IBM China Software Development Laboratory
- Chang Shu 0005 — Tsinghua University, Beijing, China
- Chang Shu 0006 — Technical School, Harbin University, Harbin, China
- Chang Shu 0007 — Chinese Academy of Sciences, Institute of Automation, Beijing, China
- Chang Shu 0008 — University of Electronic Science and Technology of China, School of Computer Science and Technology China
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2000 – 2009
- 2009
- [j3]Chang Shu, Soonhak Kwon, Kris Gaj:
Reconfigurable Computing Approach for Tate Pairing Cryptosystems over Binary Fields. IEEE Trans. Computers 58(9): 1221-1237 (2009) - 2008
- [j2]Chang Shu, Soonhak Kwon, Kris Gaj:
FPGA accelerated multipliers over binary composite fields constructed via low hamming weight irreducible polynomials. IET Comput. Digit. Tech. 2(1): 6-11 (2008) - [j1]Proshanta Saha, Esam El-Araby, Miaoqing Huang, Mohamed Taher, Sergio López-Buedo, Tarek A. El-Ghazawi, Chang Shu, Kris Gaj, Alan Michalski, Duncan A. Buell:
Portable library development for reconfigurable computing systems: A case study. Parallel Comput. 34(4-5): 245-260 (2008) - 2006
- [c4]Chang Shu, Soonhak Kwon, Kris Gaj:
FPGA accelerated tate pairing based cryptosystems over binary fields. FPT 2006: 173-180 - [i1]Chang Shu, Soonhak Kwon, Kris Gaj:
FPGA Accelerated Tate Pairing Based Cryptosystems over Binary Fields. IACR Cryptol. ePrint Arch. 2006: 179 (2006) - 2005
- [c3]Chang Shu, Kris Gaj, Tarek A. El-Ghazawi:
Low Latency Elliptic Curve Cryptography Accelerators for NIST Curves Over Binary Fields. FPT 2005: 309-310 - 2004
- [c2]Sashisu Bajracharya, Chang Shu, Kris Gaj, Tarek A. El-Ghazawi:
Implementation of elliptic curve cryptosystems over GF(2n) in optimal normal basis on a reconfigurable computer. FPGA 2004: 259 - [c1]Sashisu Bajracharya, Chang Shu, Kris Gaj, Tarek A. El-Ghazawi:
Implementation of Elliptic Curve Cryptosystems over GF(2n) in Optimal Normal Basis on a Reconfigurable Computer. FPL 2004: 1001-1005
Coauthor Index
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