Keisuke Tanaka

dblp:62/6540 · DBLP profile ↗
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78ranked-venue papers
3as first author
14since 2021 · last 2026
—ORCID · conflict

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

Security and privacy · 59 · 1 first-author · 13 since 2021Theory of computation · 13 · 2 first-author · 2 since 2021Graphics, computer vision, multimedia, augmented reality and games · 4Databases, data management, data science and information retrieval · 3 · 1 first-authorArtificial intelligence and machine learning · 1Human-computer interaction and ubiquitous computing · 1Applied, interdisciplinary, general and emerging computing · 1
YearPublicationVenuePosition
2026 Data Exfiltration over Browser
Naseer Ahmad Noor, Masahiro Ishii 0002, Keisuke Tanaka
ACISP (3)3
2026 Effective Analysis of Encrypted Traffic for Mining Detection
Masahiro Ishii 0002, Satoshi Shibuya, Keisuke Tanaka
ICISSP (1)3
2025 Double Auction Meets Blockchain: Consensus from Scored Bid-Assignment
Xiangyu Su, Xavier Défago, Mario Larangeira, Kazuyuki Mori, Takuya Oda, Yasumasa Tamura, Keisuke Tanaka
ACNS (1)7
2025 Relationships Among FuncCPA and Its Related Notions
Takumi Shinozaki, Tatsuaki Okamoto, Keisuke Tanaka, Masayuki Tezuka, Yusuke Yoshida
TCC (2)3
2024 Auditable Attribute-Based Credentials Scheme and Its Application in Contact Tracing
Xiangyu Su, Mario Larangeira, Keisuke Tanaka
ACNS (1)4
2023 Provably Secure Blockchain Protocols from Distributed Proof-of-Deep-Learning
abstract
Proof-of-useful-work (PoUW), an alternative to the widely used proof-of-work (PoW), aims to re-purpose the network’s computing power. Namely, users evaluate meaningful computational problems, e.g., solving optimization problems, instead of computing numerous hash function values as in PoW. A recent approach utilizes the training process of deep learning as “useful work”. However, these works lack security analysis when deploying them with blockchain-based protocols, let alone the informal and over-complicated system design. This work proposes a distributed proof-of-deep-learning (D-PoDL) scheme concerning PoUW’s requirements. With a novel hash-traininßg-hash structure and model-referencing mechanism, our scheme is the first deep learning-based PoUW scheme that enables achieving better accuracy distributively. Next, we introduce a transformation from the D-PoDL scheme to a generic D-PoDL blockchain protocol which can be instantiated with two chain selection rules, i.e., the longest-chain rule and the weight-based blockchain framework (LatinCrypt’ 21). This work is the first to provide formal proofs for deep learning-involved blockchain protocols concerning the robust ledger properties, i.e., chain growth, chain quality, and common prefix. Finally, we implement the D-PoDL scheme to discuss the effectiveness of our design.
Xiangyu Su, Mario Larangeira, Keisuke Tanaka
NSS3
2022 Efficient Two-Party Exponentiation from Quotient Transfer
Yi Lu 0020, Keisuke Hara, Kazuma Ohara, Jacob C. N. Schuldt, Keisuke Tanaka
ACNS5
2022 Generic transformation from broadcast encryption to round-optimal deniable ring authentication
Keisuke Hara, Takahiro Matsuda 0002, Goichiro Hanaoka, Keisuke Tanaka
Des. Codes Cryptogr.4
2022 CCA Security and Trapdoor Functions via Key-Dependent-Message Security
Fuyuki Kitagawa, Takahiro Matsuda 0002, Keisuke Tanaka
J. Cryptol.3
2022 Obfustopia Built on Secret-Key Functional Encryption
Fuyuki Kitagawa, Ryo Nishimaki, Keisuke Tanaka
J. Cryptol.3
2021 Turn-Based Communication Channels
Carlo Brunetta, Mario Larangeira, Bei Liang, Aikaterini Mitrokotsa, Keisuke Tanaka
ProvSec5
2021 Fine-Grained Cryptography Revisited
Shohei Egashira, Yuyu Wang 0001, Keisuke Tanaka
J. Cryptol.3
2021 Simple and Generic Constructions of Succinct Functional Encryption
Fuyuki Kitagawa, Ryo Nishimaki, Keisuke Tanaka
J. Cryptol.3
2021 Tightly secure ring signatures in the standard model
Keisuke Hara, Keisuke Tanaka
Theor. Comput. Sci.2
2020 Improved Security Proof for the Camenisch-Lysyanskaya Signature-Based Synchronized Aggregate Signature Scheme
Masayuki Tezuka, Keisuke Tanaka
ACISP2
2020 Non-committing Encryption with Constant Ciphertext Expansion from Standard Assumptions
Yusuke Yoshida, Fuyuki Kitagawa, Keita Xagawa, Keisuke Tanaka
ASIACRYPT (2)4
2020 Lightweight Virtual Payment Channels
Maxim Jourenko, Mario Larangeira, Keisuke Tanaka
CANS3
2020 Receiver Selective Opening CCA Secure Public Key Encryption from Various Assumptions
Yi Lu 0020, Keisuke Hara, Keisuke Tanaka
ProvSec3
2020 Watermarkable Signature with Computational Function Preserving
Kyohei Sudo, Masayuki Tezuka, Keisuke Hara, Yusuke Yoshida, Keisuke Tanaka
ProvSec5
2019 Fine-Grained Cryptography Revisited
Shohei Egashira, Yuyu Wang 0001, Keisuke Tanaka
ASIACRYPT (3)3
2019 Simple and Efficient KDM-CCA Secure Public Key Encryption
Fuyuki Kitagawa, Takahiro Matsuda 0002, Keisuke Tanaka
ASIACRYPT (3)3
2019 Non-Committing Encryption with Quasi-Optimal Ciphertext-Rate Based on the DDH Problem
Yusuke Yoshida, Fuyuki Kitagawa, Keisuke Tanaka
ASIACRYPT (3)3
2019 A t-out-of-n Redactable Signature Scheme
Masayuki Tezuka, Xiangyu Su, Keisuke Tanaka
CANS3
2019 Proper Usage of the Group Signature Scheme in ISO/IEC 20008-2
abstract
In ISO/IEC 20008-2, several anonymous digital signature schemes are specified. Among these, the scheme denoted as Mechanism 6, is the only plain group signature scheme that does not aim at providing additional functionalities. The Intel Enhanced Privacy Identification (EPID) scheme, which has many applications in connection with Intel Software Guard Extensions (Intel SGX), is in practice derived from Mechanism 6. In this paper, we firstly show that Mechanism 6 does not satisfy anonymity in the standard security model, i.e., the Bellare-Shi-Zhang model [CT-RSA 2005]. We then provide a detailed analysis of the security properties offered by Mechanism 6 and characterize the conditions under which its anonymity is preserved. Consequently, it is seen that Mechanism 6 is secure under the condition that the issuer, who generates user signing keys, does not join the attack. We also derive a simple patch for Mechanism~6 from the analysis.
Ai Ishida, Yusuke Sakai 0001, Keita Emura, Goichiro Hanaoka, Keisuke Tanaka
AsiaCCS5
2019 CCA Security and Trapdoor Functions via Key-Dependent-Message Security
Fuyuki Kitagawa, Takahiro Matsuda 0002, Keisuke Tanaka
CRYPTO (3)3
2019 Adaptively Secure and Succinct Functional Encryption: Improving Security and Efficiency, Simultaneously
Fuyuki Kitagawa, Ryo Nishimaki, Keisuke Tanaka, Takashi Yamakawa
CRYPTO (3)3
2019 Simulation-based receiver selective opening CCA secure PKE from standard computational assumptions
Keisuke Hara, Fuyuki Kitagawa, Takahiro Matsuda 0002, Goichiro Hanaoka, Keisuke Tanaka
Theor. Comput. Sci.5
2018 A Framework for Achieving KDM-CCA Secure Public-Key Encryption
Fuyuki Kitagawa, Keisuke Tanaka
ASIACRYPT (2)2
2018 Obfustopia Built on Secret-Key Functional Encryption
Fuyuki Kitagawa, Ryo Nishimaki, Keisuke Tanaka
EUROCRYPT (2)3
2018 Memory Lower Bounds of Reductions Revisited
Yuyu Wang 0001, Takahiro Matsuda 0002, Goichiro Hanaoka, Keisuke Tanaka
EUROCRYPT (1)4
2018 Performance analysis of robust watermarking using linear and nonlinear feature matching
Keisuke Tanaka, Luu Hong Dung, Nguyen Tuan Tai, Hai Nguyen Nam
Multim. Tools Appl.2
2017 Generic Constructions for Fully Secure Revocable Attribute-Based Encryption
Kotoko Yamada, Nuttapong Attrapadung, Keita Emura, Goichiro Hanaoka, Keisuke Tanaka
ESORICS (2)5
2017 CCA2 Key-Privacy for Code-Based Encryption in the Standard Model
Yusuke Yoshida, Kirill Morozov, Keisuke Tanaka
PQCrypto3
2017 General Constructions of Rational Secret Sharing with Expected Constant-Round Reconstruction
abstract
We present a protocol compiler of rational secret-sharing that converts any rational secret-sharing protocol to a protocol with an expected constant-round reconstruction. Our compiler can be applied to protocols for synchronous channels, and preserves a strict Nash equilibrium of the original protocol. Combining with an existing protocol, we obtain the first expected constant-round protocol that achieves a strict Nash equilibrium with the optimal coalition resilience ⌈n2⌉−1⁠, where n is the number of players. Our compiler can be extended to one that preserves the immunity to unexpectedly behaving players. For any constant m≥1⁠, we obtain an expected constant-round protocol that achieves a Nash equilibrium with the optimal coalition resilience ⌈n2⌉−m−1 in the presence of m unexpectedly behaving players. The protocol also achieves a strict Nash equilibrium. As a negative result, we show that if an expected constant-round protocol has immunity m>0⁠, then it cannot achieve a strict Nash equilibrium with the coalition resilience 2. Thus, our protocol with immunity achieves the optimal coalition resilience with respect to both Nash and strict Nash equilibrium.
Akinori Kawachi, Yoshio Okamoto, Keisuke Tanaka, Kenji Yasunaga
Comput. J.3
2017 An image zero-watermarking algorithm based on the encryption of visual map feature with watermark information
Keisuke Tanaka
Multim. Tools Appl.2
2016 How to Obtain Fully Structure-Preserving (Automorphic) Signatures from Structure-Preserving Ones
Yuyu Wang 0001, Zongyang Zhang, Takahiro Matsuda 0002, Goichiro Hanaoka, Keisuke Tanaka
ASIACRYPT (2)5
2016 Group Signature with Deniability: How to Disavow a Signature
Ai Ishida, Keita Emura, Goichiro Hanaoka, Yusuke Sakai 0001, Keisuke Tanaka
CANS5
2016 The novel and robust watermarking method based on q-logarithm frequency domain
Keisuke Tanaka
Multim. Tools Appl.2
2016 Generic transformations for existentially unforgeable signature schemes in the bounded leakage model
abstract
Abstract In this paper, we present generic transformations, which allow us to be able to convert any signature scheme satisfying the weak existential unforgeability property into one satisfying the strong existential unforgeability property. Different from the previous researches, we consider this kind of transformations in the bounded leakage model, in which part of the secret information could be learned by the adversary. To achieve such transformations, we define a new cryptographic primitive called leakage resilient chameleon hash function and give an instantiation of it based on leakage resilient hard relation. By making use of this new variant of chameleon hash function, we improve the technique proposed by Steinfeld, Pieprzk, and Wang to obtain a generic transformation that works well in the bounded leakage model. Furthermore, we follow the construction of strong one‐time signature by Mohassel to give an instantiation of fully leakage resilient strong one‐time signature based on leakage resilient chameleon hash function. We prove that by combining the fully leakage resilient strong one‐time signature scheme with the transformation proposed by Huang, Wong, and Zhao, we can obtain another transformation that can convert any fully leakage resilient signature scheme that is weakly existentially unforgeable into one that is strongly existentially unforgeable without changing the signing key. Copyright © 2016 John Wiley & Sons, Ltd.
Yuyu Wang 0001, Keisuke Tanaka
Secur. Commun. Networks2
2015 Generic Transformation to Strongly Existentially Unforgeable Signature Schemes with Continuous Leakage Resiliency
Yuyu Wang 0001, Keisuke Tanaka
ACISP2
2015 Disavowable Public Key Encryption with Non-interactive Opening
abstract
We propose the notion of disavowable public key encryption with non-interactive opening (disavowable PKENO) where, for a ciphertext and a message, the receiver of the ciphertext can issue a proof that the plaintext of the ciphertext is NOT the message, and give a fairly practical construction.
Ai Ishida, Keita Emura, Goichiro Hanaoka, Yusuke Sakai 0001, Keisuke Tanaka
AsiaCCS5
2015 Completeness of Single-Bit Projection-KDM Security for Public Key Encryption
Fuyuki Kitagawa, Takahiro Matsuda 0002, Goichiro Hanaoka, Keisuke Tanaka
CT-RSA4
2014 Strongly Simulation-Extractable Leakage-Resilient NIZK
Yuyu Wang 0001, Keisuke Tanaka
ACISP2
2014 A proposal of novel q-DWT for blind and robust image watermarking
abstract
In this paper, in order to control the quality of the embedded content, we propose a new domain, called q-DWT (discrete wavelet transform) for novel and robust image watermarking. We embed the watermark in the low-frequency of q-DWT domain in order to achieve the robustness of watermark. We employ the quantization index modulation (QIM) technique for embedding due to its high robustness and blindness. In our proposed method, the tradeoff of robustness and quality can be controlled by parameter Q of QIM and parameter q of the logarithm function.
Keisuke Tanaka
PIMRC2
2014 Generic Transformation to Strongly Existentially Unforgeable Signature Schemes with Leakage Resiliency
Yuyu Wang 0001, Keisuke Tanaka
ProvSec2
2013 Proxy Re-Encryption in a Stronger Security Model Extended from CT-RSA2012
Toshiyuki Isshiki, Manh Ha Nguyen, Keisuke Tanaka
CT-RSA3
2013 Factoring-Based Proxy Re-Encryption Schemes
Toshiyuki Isshiki, Manh Ha Nguyen, Keisuke Tanaka
ProvSec3
2013 Grey-Box Public-Key Steganography
Hirotoshi Takebe, Keisuke Tanaka
TAMC2
2013 Approximation and parameterized algorithms for common subtrees and edit distance between unordered trees
Tatsuya Akutsu, Daiji Fukagawa, Magnús M. Halldórsson, Atsuhiro Takasu, Keisuke Tanaka
Theor. Comput. Sci.5
2012 A Game-Theoretic Perspective on Oblivious Transfer
Haruna Higo, Keisuke Tanaka, Akihiro Yamada, Kenji Yasunaga
ACISP2
2012 Leakage-Resilience of Stateless/Stateful Public-Key Encryption from Hash Proofs
Manh Ha Nguyen, Keisuke Tanaka, Kenji Yasunaga
ACISP2
2011 Randomness Leakage in the KEM/DEM Framework
Hitoshi Namiki, Keisuke Tanaka, Kenji Yasunaga
ProvSec2
2011 Weak Oblivious Transfer from Strong One-Way Functions
Keisuke Tanaka, Akihiro Yamada, Kenji Yasunaga
ProvSec1
2010 A Multi-trapdoor Commitment Scheme from the RSA Assumption
Ryo Nishimaki, Eiichiro Fujisaki, Keisuke Tanaka
ACISP3
2009 Multi-recipient Public-Key Encryption from Simulators in Security Proofs
Harunaga Hiwatari, Keisuke Tanaka, Tomoyuki Asano, Koichi Sakumoto
ACISP2
2009 Security on Hybrid Encryption with the Tag-KEM/DEM Framework
Toshihide Matsuda, Ryo Nishimaki, Akira Numayama, Keisuke Tanaka
ACISP4
2009 On the Weak Ideal Compression Functions
Akira Numayama, Keisuke Tanaka
ACISP2
2009 Efficient Public Key Encryption Based on Ideal Lattices
Damien Stehlé, Ron Steinfeld, Keisuke Tanaka, Keita Xagawa
ASIACRYPT3
2009 On the Insecurity of the Fiat-Shamir Signatures with Iterative Hash Functions
Eiichiro Fujisaki, Ryo Nishimaki, Keisuke Tanaka
ProvSec3
2009 Efficient Non-interactive Universally Composable String-Commitment Schemes
Ryo Nishimaki, Eiichiro Fujisaki, Keisuke Tanaka
ProvSec3
2009 Zero-Knowledge Protocols for NTRU: Application to Identification and Proof of Plaintext Knowledge
Keita Xagawa, Keisuke Tanaka
ProvSec2
2008 Public-Key Cryptosystems with Primitive Power Roots of Unity
Takato Hirano, Koichiro Wada, Keisuke Tanaka
ACISP3
2008 Concurrently Secure Identification Schemes Based on the Worst-Case Hardness of Lattice Problems
Akinori Kawachi, Keisuke Tanaka, Keita Xagawa
ASIACRYPT2
2007 Anonymity on Paillier's Trap-Door Permutation
Ryotaro Hayashi 0001, Keisuke Tanaka
ACISP2
2007 The IllusionHole for Medical Applications
abstract
In this study, we discuss a display table suitable for collaborative work environments for medical use. Using an interactive stereoscopic display system allows simultaneous observation of accurate stereoscopic images generated from volume data. We further investigate all requirements for design guidelines of the display system, including hardware configuration, rendering software to generate the stereoscopic images, and the interface system to operate the displayed images
Yoshifumi Kitamura, Takashi Nakashima, Keisuke Tanaka, Takeshi Johkoh
VR3
2006 PA in the Two-Key Setting and a Generic Conversion for Encryption with Anonymity
Ryotaro Hayashi 0001, Keisuke Tanaka
ACISP2
2005 An (n-t)-out-of-n Threshold Ring Signature Scheme
Toshiyuki Isshiki, Keisuke Tanaka
ACISP2
2005 Universally Anonymizable Public-Key Encryption
Ryotaro Hayashi 0001, Keisuke Tanaka
ASIACRYPT2
2004 Limiting negations in bounded-depth circuits: An extension of Markov's theorem
Shao Chin Sung, Keisuke Tanaka
Inf. Process. Lett.2
2003 Limiting Negations in Bounded-Depth Circuits: An Extension of Markov's Theorem
Shao Chin Sung, Keisuke Tanaka
ISAAC2
2003 Extended Hierarchical Task Network Planning for Interactive Comedy
Ruck Thawonmas, Keisuke Tanaka, Hiroki Hassaku
PRIMA2
2002 An exponential gap with the removal of one negation gate
Shao Chin Sung, Keisuke Tanaka
Inf. Process. Lett.2
2000 Quantum Public-Key Cryptosystems
Tatsuaki Okamoto, Keisuke Tanaka, Shigenori Uchiyama
CRYPTO2
1998 On the Complexity of Negation-Limited Boolean Networks
abstract
A theorem of Markov precisely determines the number r of NEGATION gates necessary and sufficient to compute a system of boolean functions F. For a system of boolean functions on n variables, $r\leq b(n)=\lceil\log_2(n+1)\rceil$. We call a circuit using b(n) NEGATION gates negation-limited. We continue recent investigations into negation-limited circuit complexity, giving both upper and lower bounds. A circuit with inputs x 1 ,..., x n and outputs $\neg x_1, \ldots, \neg x_n$ is called an inverter, for which $r=\lceil\log_2(n+1)\rceil$. Fischer has constructed negation-limited inverters of size O(n 2 log n) and depth O(log n). Recently, Tanaka and Nishino have reduced the circuit size to O(n log 2 n) at the expense of increasing the depth to log 2 n. We construct negation-limited inverters of size O(n log n), with depth only O(log n), and we conjecture that this is optimal. We also improve a technique of Valiant for constructing monotone circuits for slice functions (introduced by Berkowitz). Next, we introduce some lower bound techniques for negation-limited circuits. We provide a 5n+3 log(n+1)-c lower bound for the size of a negation-limited inverter. In addition, we show that for two different restricted classes of circuit, negation-limited inverters require superlinear size.
Robert Beals, Tetsuro Nishino, Keisuke Tanaka
SIAM J. Comput.3
1996 Approximation and Special Cases of Common Subtrees and Editing Distance
Magnús M. Halldórsson, Keisuke Tanaka
ISAAC2
1996 Negation-Limited Circuit Complexity of Symmetric Functions
Keisuke Tanaka, Tetsuro Nishino, Robert Beals
Inf. Process. Lett.1
1995 More on the complexity of negation-limited circuits
Robert Beals, Tetsuro Nishino, Keisuke Tanaka
STOC3
1994 On the complexity of negation-limited Boolean networks
abstract
limited circuit is a combinational circuit Communications for their valuable comments.
Keisuke Tanaka, Tetsuro Nishino
STOC1