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Kazuyuki Shudo
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2020 – today
- 2024
- [j20]Taishi Nakai, Akira Sakurai, Shiori Hironaka, Kazuyuki Shudo:
A Formulation of the Trilemma in Proof of Work Blockchain. IEEE Access 12: 80559-80578 (2024) - [c73]Hidemasa Tanaka, Shiori Hironaka, Kazuyuki Shudo:
Quantitative Analysis of the Reward Rate Disparity Among Delegators in a DPoS Blockchain. BigComp 2024: 136-142 - [c72]Yuto Takei, Kazuyuki Shudo:
Effective Ethereum Staking in Cryptocurrency Exchanges. Blockchain 2024: 332-339 - [c71]Hidemasa Tanaka, Shiori Hironaka, Kazuyuki Shudo:
Correlation Analysis of Reward Rate in a DPoS Blockchain. Blockchain 2024: 470-476 - [c70]Yuto Takei, Kazuyuki Shudo:
Pragmatic Analysis of Key Management for Cryptocurrency Custodians. ICBC 2024: 747-765 - [c69]Yuto Takei, Kazuyuki Shudo:
FATF Travel Rule's Technical Challenges and Solution Taxonomy. ICBC 2024: 784-799 - [c68]Taishi Nakai, Kazuyuki Shudo:
Impacts on Fork Rate of Changes of Block Size and Block Generation Time for Blockchain Scalability. ICCE 2024: 1-3 - [c67]Shinnosuke Masuda, Tsuyoshi Hasegawa, Taishi Nakai, Akira Sakurai, Kazuyuki Shudo:
High-Bandwidth Node Selection in Compact Block Relay. iThings/GreenCom/CPSCom/SmartData/Cybermatics 2024: 454-458 - [i16]Akira Sakurai, Kazuyuki Shudo:
Tie-Breaking Rule Based on Partial Proof of Work in a Blockchain. CoRR abs/2403.15030 (2024) - [i15]Akira Sakurai, Kazuyuki Shudo:
Model-based Analysis of Mining Fairness in a Blockchain. CoRR abs/2406.00595 (2024) - [i14]Tsuyoshi Hasegawa, Shiori Hironaka, Kazuyuki Shudo:
Estimation of Graph Features Based on Random Walks Using Neighbors' Properties. CoRR abs/2409.08599 (2024) - 2023
- [j19]Takeshi Kaneko, Kazuyuki Shudo:
Broadcast with Tree Selection from Multiple Spanning Trees on an Overlay Network. IEICE Trans. Commun. 106(2): 145-155 (2023) - [j18]Yusuke Kitagawa, Kazuyuki Shudo, Osamu Mizuno, Ryohei Banno:
A Study of Using Plumtree Algorithm in Blockchain Networks. J. Inf. Process. 31: 387-391 (2023) - [j17]Kazuki Nakajima, Ruodan Liu, Kazuyuki Shudo, Naoki Masuda:
Quantifying gender imbalance in East Asian academia: Research career and citation practice. J. Informetrics 17(4): 101460 (2023) - [j16]Kazuki Nakajima, Kazuyuki Shudo, Naoki Masuda:
Higher-order rich-club phenomenon in collaborative research grant networks. Scientometrics 128(4): 2429-2446 (2023) - [j15]Kazuki Nakajima, Kazuyuki Shudo:
Random Walk Sampling in Social Networks Involving Private Nodes. ACM Trans. Knowl. Discov. Data 17(4): 51:1-51:28 (2023) - [c66]Rikuya Miyashita, Kazuki Nakajima, Mei Fukuda, Kazuyuki Shudo:
Randomizing Hypergraphs Preserving Two-mode Clustering Coefficient. BigComp 2023: 316-317 - [c65]Taishi Nakai, Akira Sakurai, Shiori Hironaka, Kazuyuki Shudo:
The Blockchain Trilemma Described by a Formula. Blockchain 2023: 41-46 - [c64]Kazuya Nagasato, Satoshi Takabe, Kazuyuki Shudo:
Hypergraph Embedding Based on Random Walk with Adjusted Transition Probabilities. DaWaK 2023: 91-100 - [c63]Rikuya Miyashita, Kazuki Nakajima, Mei Fukuda, Kazuyuki Shudo:
Random Hypergraph Model Preserving Two-Mode Clustering Coefficient. DaWaK 2023: 191-196 - [c62]Kazuyuki Shudo, Tsuyoshi Hasegawa, Akira Sakurai, Ryohei Banno:
Blockchain Network Studies Enabled by SimBlock. ICBC 2023: 1-2 - [c61]Akira Sakurai, Kazuyuki Shudo:
Impact of the Hash Rate on the Theoretical Fork Rate of Blockchain. ICCE 2023: 1-4 - [c60]Tsuyoshi Hasegawa, Akira Sakurai, Kazuyuki Shudo:
Quick Notification of Block Generation Using Bloom Filter in a Blockchain. ISCC 2023: 457-463 - [c59]Akira Sakurai, Kazuyuki Shudo:
Accelerating Block Propagation with Sender Switchover in a Blockchain. ISCC 2023: 1086-1089 - [c58]Taisuke Moriwaki, Kazuyuki Shudo:
Gossip Distillation: Decentralized Deep Learning Transmitting Neither Training Data Nor Models. VCC 2023: 317-322 - [i13]Kazuki Nakajima, Ruodan Liu, Kazuyuki Shudo, Naoki Masuda:
Quantifying gender imbalance in East Asian academia. CoRR abs/2302.07843 (2023) - [i12]Kazuki Nakajima, Kazuyuki Shudo:
Random Walk Sampling in Social Networks Involving Private Nodes. CoRR abs/2305.12314 (2023) - 2022
- [j14]Mei Fukuda, Kazuki Nakajima, Kazuyuki Shudo:
Estimating the Bot Population on Twitter via Random Walk Based Sampling. IEEE Access 10: 17201-17211 (2022) - [j13]Ryunosuke Nagayama, Ryohei Banno, Kazuyuki Shudo:
Trail: An Architecture for Compact UTXO-Based Blockchain and Smart Contract. IEICE Trans. Inf. Syst. 105-D(2): 333-343 (2022) - [j12]Kazuki Nakajima, Kazuyuki Shudo, Naoki Masuda:
Randomizing Hypergraphs Preserving Degree Correlation and Local Clustering. IEEE Trans. Netw. Sci. Eng. 9(3): 1139-1153 (2022) - [c57]Yuya Miki, Kazuyuki Shudo:
A Distributed Clock Synchronization Protocol for Proof of Stake Blockchains. Blockchain 2022: 132-138 - [c56]Masumi Arakawa, Kazuyuki Shudo:
Block Interval Adjustment Based on Block Propagation Time in a Blockchain. Blockchain 2022: 202-207 - [c55]Taegyu Song, Kazuyuki Shudo:
Block Pruning with UTXO Aggregation. Blockchain 2022: 312-319 - [c54]Yuya Miki, Takeshi Kaneko, Ryohei Banno, Kazuyuki Shudo:
An Efficient Range Search Method Utilizing Detour Routes in Skip Graph. CCNC 2022: 905-908 - [c53]Kazuki Nakajima, Kazuyuki Shudo:
Social Graph Restoration via Random Walk Sampling. ICDE 2022: 1-14 - [c52]Takeshi Kaneko, Kazuyuki Shudo:
Broadcast with Tree Selection on An Overlay Network. ICOIN 2022: 244-249 - [c51]Mei Fukuda, Kazuyuki Shudo, Hiroki Sayama:
Detecting and Forecasting Local Collective Sentiment Using Emojis. ICWSM Workshops 2022 - [i11]Kazuki Nakajima, Kazuyuki Shudo, Naoki Masuda:
Higher-order rich-club phenomenon in collaborative research grants. CoRR abs/2206.11470 (2022) - 2021
- [j11]Hideaki Oguni, Kazuyuki Shudo:
Communication Scheduling for Gossip SGD in a Wide Area Network. IEEE Access 9: 77873-77881 (2021) - [j10]Kai Otsuki, Ryuya Nakamura, Kazuyuki Shudo:
Impact of Saving Attacks on Blockchain Consensus. IEEE Access 9: 133011-133022 (2021) - [c50]Shu Takayama, Yuto Takei, Kazuyuki Shudo:
An Examination Protocol for Handling Programmable Answers Using a Public Blockchain. Blockchain 2021: 361-368 - [c49]Hideaki Oguni, Kazuyuki Shudo:
Addressing the Heterogeneity of A Wide Area Network for DNNs. CCNC 2021: 1-6 - [c48]Liang Wei, Kazuyuki Shudo:
Dynamic Computing Resources Allocation for Multiple Deep Learning Tasks. IPDPS Workshops 2021: 899-905 - [i10]Kazuki Nakajima, Kazuyuki Shudo, Naoki Masuda:
Randomizing hypergraphs preserving degree correlation and local clustering. CoRR abs/2106.12162 (2021) - [i9]Kazuki Nakajima, Kazuyuki Shudo:
Social Graph Restoration via Random Walk Sampling. CoRR abs/2111.11966 (2021) - 2020
- [j9]Ryohei Banno, Kazuyuki Shudo:
An Efficient Routing Method for Range Queries in Skip Graph. IEICE Trans. Inf. Syst. 103-D(3): 516-525 (2020) - [j8]Kazuki Nakajima, Kazuyuki Shudo:
Estimating High Betweenness Centrality Nodes via Random walk in Social Networks. J. Inf. Process. 28: 436-444 (2020) - [j7]Takeshi Kaneko, Ryohei Banno, Kazuyuki Shudo, Kota Abe, Yuuichi Teranishi:
Detouring Skip Graph: Efficient Routing via Detour Routes on Skip Graph Topology. IEEE Open J. Commun. Soc. 1: 1658-1673 (2020) - [c47]Kai Otsuki, Ryohei Banno, Kazuyuki Shudo:
Quantitatively Analyzing Relay Networks in Bitcoin. Blockchain 2020: 214-220 - [c46]Takeshi Kaneko, Ryohei Banno, Kazuyuki Shudo, Yusuke Aoki, Kota Abe, Yuuichi Teranishi:
Detouring Skip Graph: A Structured Overlay Utilizing Detour Routes. CCNC 2020: 1-7 - [c45]Ryohei Banno, Kazuyuki Shudo:
Adaptive Topology for Scalability and Immediacy in Distributed Publish/Subscribe Messaging. COMPSAC 2020: 575-583 - [c44]Reiki Kanda, Kazuyuki Shudo:
Block Interval Adjustment Toward Fair Proof-of-Work Blockchains. ICDE Workshops 2020: 1-6 - [c43]Ryohei Banno, Kazuyuki Shudo:
Skip Suffix Array: A Partial Match Retrieval Method on Structured Overlay Networks. ICOIN 2020: 487-492 - [c42]Ryunosuke Nagayama, Ryohei Banno, Kazuyuki Shudo:
Identifying Impacts of Protocol and Internet Development on the Bitcoin Network. ISCC 2020: 1-6 - [c41]Ryunosuke Nagayama, Ryohei Banno, Kazuyuki Shudo:
Trail: A Blockchain Architecture for Light Nodes. ISCC 2020: 1-7 - [c40]Kazuki Nakajima, Kazuyuki Shudo:
Estimating Properties of Social Networks via Random Walk considering Private Nodes. KDD 2020: 720-730 - [i8]Kazuki Nakajima, Kazuyuki Shudo:
Estimating Properties of Social Networks via Random Walk considering Private Nodes. CoRR abs/2006.12196 (2020) - [i7]Ryunosuke Nagayama, Ryohei Banno, Kazuyuki Shudo:
Trail: A Blockchain Architecture for Light Nodes. CoRR abs/2007.08066 (2020)
2010 – 2019
- 2019
- [j6]Ryohei Banno, Jingyu Sun, Susumu Takeuchi, Kazuyuki Shudo:
Interworking Layer of Distributed MQTT Brokers. IEICE Trans. Inf. Syst. 102-D(12): 2281-2294 (2019) - [c39]Kai Otsuki, Yusuke Aoki, Ryohei Banno, Kazuyuki Shudo:
Effects of a Simple Relay Network on the Bitcoin Network. AINTEC 2019: 41-46 - [c38]Reiki Kanda, Kazuyuki Shudo:
Estimation of Data Propagation Time on the Bitcoin Network. AINTEC 2019: 47-52 - [c37]Yusuke Aoki, Kazuyuki Shudo:
Proximity Neighbor Selection in Blockchain Networks. Blockchain 2019: 52-58 - [c36]Yoshiki Takahashi, Masato Asahara, Kazuyuki Shudo:
A Framework for Model Search Across Multiple Machine Learning Implementations. eScience 2019: 331-338 - [c35]Ryohei Banno, Kazuyuki Shudo:
Simulating a Blockchain Network with SimBlock. IEEE ICBC 2019: 3-4 - [c34]Masaaki Ohnishi, Kazuyuki Shudo:
Distributed ID/Locator Resolution System for Inter Mesh Networks. ICOIN 2019: 198-203 - [c33]Yusuke Aoki, Kai Otsuki, Takeshi Kaneko, Ryohei Banno, Kazuyuki Shudo:
SimBlock: A Blockchain Network Simulator. INFOCOM Workshops 2019: 325-329 - [c32]Toshiki Matsumura, Kazuyuki Shudo:
Metropolis-Hastings Random Walk with a Reduced Number of Self-Loops. ISPA/BDCloud/SocialCom/SustainCom 2019: 1556-1563 - [i6]Yusuke Aoki, Kai Otsuki, Takeshi Kaneko, Ryohei Banno, Kazuyuki Shudo:
SimBlock: A Blockchain Network Simulator. CoRR abs/1901.09777 (2019) - [i5]Yusuke Aoki, Kazuyuki Shudo:
Proximity Neighbor Selection in Blockchain Networks. CoRR abs/1906.00719 (2019) - [i4]Yoshiki Takahashi, Masato Asahara, Kazuyuki Shudo:
A Framework for Model Search Across Multiple Machine Learning Implementations. CoRR abs/1908.10310 (2019) - [i3]Ryunosuke Nagayama, Kazuyuki Shudo, Ryohei Banno:
Simulation of the Bitcoin Network Considering Compact Block Relay and Internet Improvements. CoRR abs/1912.05208 (2019) - 2018
- [c31]Kenta Iwasaki, Kazuyuki Shudo:
Estimating the Clustering Coefficient of a Social Network by a Non-backtracking Random Walk. BigComp 2018: 114-118 - [c30]Toshiki Matsumura, Kenta Iwasaki, Kazuyuki Shudo:
Average Path Length Estimation of Social Networks by Random Walk. BigComp 2018: 611-614 - [c29]Yusuke Aoki, Masaaki Ohnishi, Kazuyuki Shudo:
Ballistic Skip Graph: A Skip Graph-Style Constant-Degree Structured Overlay. ISCC 2018: 341-346 - [c28]Kazuki Nakajima, Kenta Iwasaki, Toshiki Matsumura, Kazuyuki Shudo:
Estimating Top-k Betweenness Centrality Nodes in Online Social Networks. ISPA/IUCC/BDCloud/SocialCom/SustainCom 2018: 1128-1135 - [c27]Kenta Iwasaki, Kazuyuki Shudo:
Comparing Graph Sampling Methods Based on the Number of Queries. ISPA/IUCC/BDCloud/SocialCom/SustainCom 2018: 1136-1143 - [i2]Kazuyuki Shudo, Kenji Saito:
Towards Application Portability on Blockchains. CoRR abs/1801.01421 (2018) - 2017
- [j5]Kazuyuki Shudo, Takashi Yaguchi:
Causal Consistency for Data Stores and Applications as They are. J. Inf. Process. 25: 775-782 (2017) - [c26]Takafumi Kawaguchi, Ryohei Banno, Masashi Hojo, Masaaki Ohnishi, Kazuyuki Shudo:
Self-refining skip graph: Skip graph approaching to an ideal topology. CCNC 2017: 441-448 - [c25]Ryohei Banno, Jingyu Sun, Masahiro Fujita, Susumu Takeuchi, Kazuyuki Shudo:
Dissemination of edge-heavy data on heterogeneous MQTT brokers. CloudNet 2017: 5-11 - [c24]Kazuyuki Shudo:
Message bundling on structured overlays. ISCC 2017: 424-431 - 2016
- [c23]Yasunari Takatsuka, Hiroya Nagao, Takashi Yaguchi, Masatoshi Hanai, Kazuyuki Shudo:
A caching mechanism based on data freshness. BigComp 2016: 329-332 - [c22]Takafumi Kawaguchi, Ryohei Banno, Masashi Hojo, Kazuyuki Shudo:
Self-Refining Skip Graph: A Structured Overlay Approaching to Ideal Skip Graph. COMPSAC Workshops 2016: 377-378 - [c21]Kazuyuki Shudo, Takashi Yaguchi:
Causal Consistency for Distributed Data Stores and Applications as They are. COMPSAC 2016: 602-607 - [c20]Kazuyuki Shudo, Yuya Kato, Takahiro Sugino, Masatoshi Hanai:
Parallel Discrete-Event Simulation on Data Processing Engines. DS-RT 2016: 69-76 - [c19]Masashi Hojo, Ryohei Banno, Kazuyuki Shudo:
FRT-Skip Graph: A Skip Graph-style structured overlay based on Flexible Routing Tables. ISCC 2016: 657-662 - [i1]Naoki Matagawa, Kazuyuki Shudo:
Breakdown of a Benchmark Score Without Internal Analysis of Benchmarking Program. CoRR abs/1610.06307 (2016) - 2015
- [c18]Hiroya Nagao, Kazuyuki Shudo:
Mergeable flexible routing tables: A design framework for reusable structured overlay algorithms. ICOIN 2015: 312-317 - [c17]Masashi Hojo, Hiroya Nagao, Takehiro Miyao, Kazuyuki Shudo:
A two-dimensional structured overlay based on flexible routing tables. ISCC 2015: 289-294 - 2014
- [c16]Masatoshi Hanai, Toyotaro Suzumura, Anthony Ventresque, Kazuyuki Shudo:
An Adaptive VM Provisioning Method for Large-Scale Agent-Based Traffic Simulations on the Cloud. CloudCom 2014: 130-137 - [c15]Masatoshi Hanai, Kazuyuki Shudo:
Optimistic Parallel Simulation of Very Large-Scale Peer-to-Peer Systems. DS-RT 2014: 35-42 - [c14]Masatoshi Hanai, Toyotaro Suzumura, Anthony Ventresque, Kazuyuki Shudo:
Towards a Framework for Adaptive Resource Provisioning in Large-Scale Distributed Agent-Based Simulation. Euro-Par Workshops (1) 2014: 430-439 - [c13]Yasuhiro Ando, Hiroya Nagao, Takehiro Miyao, Kazuyuki Shudo:
FRT-2-Chord: A DHT supporting seamless transition between one-hop and multi-hop lookups with symmetric Routing Table. ICOIN 2014: 170-175 - [c12]Takehiro Miyao, Hiroya Nagao, Kazuyuki Shudo:
A structured overlay for non-uniform node identifier distribution based on flexible routing tables. ISCC 2014: 1-6 - [c11]Yasuhiro Ando, Hiroya Nagao, Takehiro Miyao, Kazuyuki Shudo:
Routing table construction method solely based on query flows for structured overlays. P2P 2014: 1-5 - [c10]Hiroya Nagao, Kazuyuki Shudo:
GFRT-chord: Flexible Structured Overlay Using Node Groups. UIC/ATC/ScalCom 2014: 187-195 - 2013
- [c9]Takehiro Miyao, Hiroya Nagao, Kazuyuki Shudo:
A method for designing proximity-aware routing algorithms for structured overlays. ISCC 2013: 508-514 - 2012
- [c8]Shunsuke Nakamura, Kazuyuki Shudo:
MyCassandra: a cloud storage supporting both read heavy and write heavy workloads. SYSTOR 2012: 5 - 2011
- [c7]Hiroya Nagao, Kazuyuki Shudo:
Flexible routing tables: Designing routing algorithms for overlays based on a total order on a routing table set. Peer-to-Peer Computing 2011: 72-81 - [c6]Hiroya Nagao, Shuji Suzuki, Kazuyuki Shudo:
A 3D visualization system for structured overlays. Peer-to-Peer Computing 2011: 168-169
2000 – 2009
- 2009
- [c5]Kazuyuki Shudo:
Churn Tolerance Improvement Techniques in an Algorithm-Neutral DHT. AIMS 2009: 42-55 - 2008
- [j4]Kazuyuki Shudo, Yoshio Tanaka, Satoshi Sekiguchi:
Overlay Weaver: An overlay construction toolkit. Comput. Commun. 31(2): 402-412 (2008) - 2005
- [c4]Kazuyuki Shudo, Yoshio Tanaka, Satoshi Sekiguchi:
P3: P2P-based middleware enabling transfer and aggregation of computational resources. CCGRID 2005: 259-266 - 2004
- [j3]Kazuyuki Shudo, Satoshi Sekiguchi, Yoichi Muraoka:
Cost-effective compilation techniques for Java Just-in-Time compilers. Syst. Comput. Jpn. 35(12): 10-24 (2004) - 2003
- [j2]Hiroshi Takemiya, Kazuyuki Shudo, Yoshio Tanaka, Satoshi Sekiguchi:
Constructing Grid Applications Using Standard Grid Middleware. J. Grid Comput. 1(2): 117-131 (2003) - 2001
- [j1]Kazuyuki Shudo, Yoichi Muraoka:
Asynchronous migration of execution context in Java Virtual Machines. Future Gener. Comput. Syst. 18(2): 225-233 (2001) - 2000
- [c3]Gregor von Laszewski, Kazuyuki Shudo, Yoichi Muraoka:
Grid-Based Asynchronous Migration of Execution Context in Java Virtual Machines. Euro-Par 2000: 22-34 - [c2]Kazuyuki Shudo, Yoichi Muraoka:
MetaVM: A Transparent Distributed Object System Supported by Runtime Compiler. PDPTA 2000 - [c1]Hirobumi Sugino, Kazuyuki Shudo, Masayoshi Sekiguchi, Yoichi Muraoka:
A Model for Stream Calculation. PDPTA 2000
Coauthor Index
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