Jiseung Kim 0001

dblp:70/7865-1 · DBLP profile ↗
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11ranked-venue papers
4as first author
9since 2021 · last 2026
0000-0002-0850-839XORCID · verified

Domains — the database's venue-derived domains; a paper can count in several

Security and privacy · 9 · 2 first-author · 7 since 2021Computer networks · 1 · 1 first-author · 1 since 2021Software engineering, systems software and programming languages · 1 · 1 first-author · 1 since 2021
YearPublicationVenuePosition
2026 A hybrid of lattice-reduction and Meet-LWE via near-collision on babai's plane
Minki Hhan, Jiseung Kim 0001, Changmin Lee 0001, Yongha Son
Des. Codes Cryptogr.2
2026 Insecurity of Forward Secure Equality Test for Secure Data Sharing in Healthcare Systems
abstract
Recently, a forward secure identity-based encryption with equality test (FS-IBEET) scheme was proposed for secure data sharing in healthcare systems and was claimed to achieve indistinguishability against adaptive chosen-identity and chosen-ciphertext attacks (IND-ID-CCA). In this letter, we show that the proposed scheme fails to provide the claimed IND-ID-CCA security. We present a practical chosen-ciphertext attack that exploits a structural design flaw. In particular, achieving INDID-CCA security appears infeasible under the current framework, where the ciphertext publicly reveals the time slot in conjunction with the 0/1-encodings. This vulnerability is critical, as it fundamentally compromises the confidentiality guarantees essential to healthcare IoT environments, potentially leading to the corruption or leakage of patient records.
Jiseung Kim 0001, Hyung Tae Lee
IEEE Internet Things J.1
2025 Improved Universal Thresholdizer from Iterative Shamir Secret Sharing
Jung Hee Cheon, Wonhee Cho 0001, Jiseung Kim 0001
J. Cryptol.3
2025 Comment on "RCME: A Reputation Incentive Committee Consensus-Based for Matchmaking Encryption in IoT Healthcare"
abstract
Recently, Yang et al. proposed a reputation incentive committee consensus-based matchmaking scheme (IEEE Transactions on Services Computing, 2024), claiming to achieve indistinguishability under adaptive chosen ciphertext attacks (IND-CCA2). In this work, we present a plaintext recovery attack against their scheme under the adaptive chosen ciphertext attack model, analyze the design and proof flaws enabling the attacks, and suggest a countermeasure to achieve the IND-CCA2 security.
Jiseung Kim 0001, Hyung Tae Lee
IEEE Trans. Serv. Comput.1
2023 A polynomial time algorithm for breaking NTRU encryption with multiple keys
Jiseung Kim 0001, Changmin Lee 0001
Des. Codes Cryptogr.1
2022 Adventures in crypto dark matter: attacks, fixes and analysis for weak pseudorandom functions
Jung Hee Cheon, Wonhee Cho 0001, Jeong Han Kim, Jiseung Kim 0001
Des. Codes Cryptogr.4
2022 Cryptanalysis of FRS obfuscation based on the CLT13 multilinear map
abstract
Abstract The authors present a classical polynomial‐time attack against the branching program obfuscator of Fernando–Rasmussen–Sahai (for short FRS, Asiacrypt’17) (with one zerotest parameter), which is robust against all known classical cryptanalyses on obfuscators when instantiated with the CLT13 multilinear map. The first step is to recover a plaintext modulus of the CLT13 multilinear map. To achieve the goal, the Coron and Notarnicola (Asiacrypt’19) algorithm is applied. However, because of parameter issues, the algorithm cannot be used directly. In order to detour the issue, the authors convert an FRS obfuscator into a new programme containing a small message space. Through the conversion, the authors obtain two zerotest parameters and encodings of zero except for two non‐zero slots. Then, they are used to mitigate parameter constraints of the message space recovering algorithm. Then, a cryptanalysis of the FRS obfuscation based on the recovered message space is proposed. The authors show that there exist two functionally equivalent programmes such that their obfuscated programmes are computationally distinguishable. Thus, the FRS scheme does not satisfy the desired security without any additional constraints.
Jiseung Kim 0001, Changmin Lee 0001
IET Inf. Secur.1
2021 (In)security of concrete instantiation of Lin17's functional encryption scheme from noisy multilinear maps
Wonhee Cho 0001, Jiseung Kim 0001, Changmin Lee 0001
Des. Codes Cryptogr.2
2021 Extension of simultaneous Diophantine approximation algorithm for partial approximate common divisor variants
abstract
Abstract A simultaneous Diophantine approximation (SDA) algorithm takes instances of the partial approximate common divisor (PACD) problem as input and outputs a solution. While several encryption schemes have been published and their securities depend on the presumed hardness of variant of the PACD problem, fewer studies have attempted to extend the SDA algorithm to be applicable to these variants. In this study, the SDA algorithm is extended to solve the general PACD problem. In order to proceed, first the variants of the PACD problem are classified and how to extend the SDA algorithm for each is suggested. Technically, the authors show that a short vector of some lattice used in the SDA algorithm gives an algebraic relation between secret parameters. Then, all the secret parameters can be recovered by finding this short vector. It is also confirmed experimentally that this algorithm works well.
Wonhee Cho 0001, Jiseung Kim 0001, Changmin Lee 0001
IET Inf. Secur.2
2019 Statistical Zeroizing Attack: Cryptanalysis of Candidates of BP Obfuscation over GGH15 Multilinear Map
Jung Hee Cheon, Wonhee Cho 0001, Minki Hhan, Jiseung Kim 0001, Changmin Lee 0001
CRYPTO (3)4
2018 Cryptanalyses of Branching Program Obfuscations over GGH13 Multilinear Map from the NTRU Problem
Jung Hee Cheon, Minki Hhan, Jiseung Kim 0001, Changmin Lee 0001
CRYPTO (3)3