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Souradyuti Paul
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2020 – today
- 2024
- [j4]Kolichala Rajashekar, Souradyuti Paul, Sushanta Karmakar, Subhajit Sidhanta:
Reinforcement Learning for Real-Time Federated Learning for Resource-Constrained Edge Cluster. J. Netw. Syst. Manag. 32(4): 94 (2024) - [c19]Kolichala Rajashekar, Subhajit Sidhanta, Souradyuti Paul:
Towards a Mobility-cum-Battery Aware Dynamic UAV Deployment for Uninterrupted Connectivity. NOMS 2024: 1-5 - 2023
- [c18]Kolichala Rajashekar, Sushanta Karmakar, Souradyuti Paul, Subhajit Sidhanta:
Topology-Aware Cluster Configuration for Real-time Multi-access Edge Computing. ICDCN 2023: 286-287 - 2022
- [c17]Kolichala Rajashekar, Souradyuti Paul, Sushanta Karmakar, Subhajit Sidhanta:
Topology Aware Cluster Configuration for Minimizing Communication Delay in Edge Computing. ICDCS 2022: 1310-1311 - 2020
- [i15]Souradyuti Paul, Ananya Shrivastava:
Efficient and Fair Multiparty Protocols using Blockchain and Trusted Hardware. IACR Cryptol. ePrint Arch. 2020: 133 (2020)
2010 – 2019
- 2019
- [c16]Souradyuti Paul, Ananya Shrivastava:
Efficient Fair Multiparty Protocols Using Blockchain and Trusted Hardware. LATINCRYPT 2019: 301-320 - 2018
- [j3]Suyash Kandele, Souradyuti Paul:
Key Assignment Scheme with Authenticated Encryption. IACR Trans. Symmetric Cryptol. 2018(4): 150-196 (2018) - [c15]Souradyuti Paul, Ananya Shrivastava:
Robust Multiparty Computation with Faster Verification Time. ACISP 2018: 114-131 - [c14]Suyash Kandele, Souradyuti Paul:
Message-Locked Encryption with File Update. ACNS 2018: 678-695 - [i14]Sudhakar Kumawat, Souradyuti Paul:
A New Constant-size Accountable Ring Signature Scheme Without Random Oracles. IACR Cryptol. ePrint Arch. 2018: 242 (2018) - [i13]Indra Deep Mastan, Souradyuti Paul:
A New Approach to Deanonymization of Unreachable Bitcoin Nodes. IACR Cryptol. ePrint Arch. 2018: 243 (2018) - [i12]Suyash Kandele, Souradyuti Paul:
Message-locked Encryption with File Update. IACR Cryptol. ePrint Arch. 2018: 422 (2018) - [i11]Suyash Kandele, Souradyuti Paul:
Key Assignment Scheme with Authenticated Encryption. IACR Cryptol. ePrint Arch. 2018: 1233 (2018) - 2017
- [c13]Indra Deep Mastan, Souradyuti Paul:
A New Approach to Deanonymization of Unreachable Bitcoin Nodes. CANS 2017: 277-298 - [c12]Sudhakar Kumawat, Souradyuti Paul:
A New Constant-Size Accountable Ring Signature Scheme Without Random Oracles. Inscrypt 2017: 157-179 - 2016
- [j2]Dustin Moody, Souradyuti Paul, Daniel Smith-Tone:
Improved indifferentiability security bound for the JH mode. Des. Codes Cryptogr. 79(2): 237-259 (2016) - [j1]Dustin Moody, Souradyuti Paul, Daniel Smith-Tone:
Indifferentiability security of the fast wide pipe hash: Breaking the birthday barrier. J. Math. Cryptol. 10(2): 101-133 (2016) - 2012
- [c11]Souradyuti Paul, Ekawat Homsirikamol, Kris Gaj:
A Novel Permutation-Based Hash Mode of Operation FP and the Hash Function SAMOSA. INDOCRYPT 2012: 509-527 - [i10]Dustin Moody, Souradyuti Paul, Daniel Smith-Tone:
Improved Indifferentiability Security Bound for the JH Mode. IACR Cryptol. ePrint Arch. 2012: 278 (2012) - [i9]Souradyuti Paul, Ekawat Homsirikamol, Kris Gaj:
A Novel Permutation-based Hash Mode of Operation FP and the Hash Function SAMOSA. IACR Cryptol. ePrint Arch. 2012: 597 (2012) - 2011
- [i8]Dustin Moody, Souradyuti Paul, Daniel Smith-Tone:
Indifferentiability Security of the Fast Widepipe Hash: Breaking the Birthday Barrier. IACR Cryptol. ePrint Arch. 2011: 630 (2011) - 2010
- [c10]Mridul Nandi, Souradyuti Paul:
Speeding Up the Wide-Pipe: Secure and Fast Hashing. INDOCRYPT 2010: 144-162 - [i7]Mridul Nandi, Souradyuti Paul:
Speeding Up The Widepipe: Secure and Fast Hashing. IACR Cryptol. ePrint Arch. 2010: 193 (2010)
2000 – 2009
- 2007
- [c9]Gautham Sekar, Souradyuti Paul, Bart Preneel:
Related-Key Attacks on the Py-Family of Ciphers and an Approach to Repair the Weaknesses. INDOCRYPT 2007: 58-72 - [c8]Gautham Sekar, Souradyuti Paul, Bart Preneel:
New Weaknesses in the Keystream Generation Algorithms of the Stream Ciphers TPy and Py. ISC 2007: 249-262 - [c7]Gautham Sekar, Souradyuti Paul, Bart Preneel:
New Attacks on the Stream Cipher TPy6 and Design of New Ciphers the TPy6-A and the TPy6-B. WEWoRC 2007: 127-141 - [i6]Souradyuti Paul:
Cryptanalysis of Stream Ciphers Based on Arrays and Modular Addition. IACR Cryptol. ePrint Arch. 2007: 54 (2007) - [i5]Gautham Sekar, Souradyuti Paul, Bart Preneel:
Weaknesses in the Pseudorandom Bit Generation Algorithms of the Stream Ciphers TPypy and TPy. IACR Cryptol. ePrint Arch. 2007: 75 (2007) - [i4]Gautham Sekar, Souradyuti Paul, Bart Preneel:
New Weaknesses in the Keystream Generation Algorithms of the Stream Ciphers TPy and Py. IACR Cryptol. ePrint Arch. 2007: 230 (2007) - [i3]Gautham Sekar, Souradyuti Paul, Bart Preneel:
New Attacks on the Stream Cipher TPy6 and Design of New Ciphers the TPy6-A and the TPy6-B. IACR Cryptol. ePrint Arch. 2007: 436 (2007) - 2006
- [c6]Souradyuti Paul, Bart Preneel:
On the (In)security of Stream Ciphers Based on Arrays and Modular Addition. ASIACRYPT 2006: 69-83 - [c5]Souradyuti Paul, Bart Preneel, Gautham Sekar:
Distinguishing Attacks on the Stream Cipher Py. FSE 2006: 405-421 - 2005
- [c4]Souradyuti Paul, Bart Preneel:
Solving Systems of Differential Equations of Addition. ACISP 2005: 75-88 - [c3]Souradyuti Paul, Bart Preneel:
Near Optimal Algorithms for Solving Differential Equations of Addition with Batch Queries. INDOCRYPT 2005: 90-103 - [i2]Souradyuti Paul, Bart Preneel:
On the (In)security of Stream Ciphers Based on Arrays and Modular Addition (Full Version). IACR Cryptol. ePrint Arch. 2005: 448 (2005) - 2004
- [c2]Souradyuti Paul, Bart Preneel:
A New Weakness in the RC4 Keystream Generator and an Approach to Improve the Security of the Cipher. FSE 2004: 245-259 - [i1]Souradyuti Paul, Bart Preneel:
Solving Systems of Differential Equations of Addition. IACR Cryptol. ePrint Arch. 2004: 294 (2004) - 2003
- [c1]Souradyuti Paul, Bart Preneel:
Analysis of Non-fortuitous Predictive States of the RC4 Keystream Generator. INDOCRYPT 2003: 52-67
Coauthor Index
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