default search action
Tomoyuki Yokogawa
Person information
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [c56]Hirohisa Aman, Sousuke Amasaki, Tomoyuki Yokogawa, Minoru Kawahara:
A Quantitative Investigation of Trends in Confusing Variable Pairs Through Commits: Do Confusing Variable Pairs Survive? EASE 2024: 90-99 - [c55]Hiroshi Miyata, Kazutami Arimoto, Masatoshi Saitoh, Atsushi Hayami, Hisayoshi Mizuno, Yukihiko Shimazu, Tomoyuki Yokogawa:
Distributed Hierarchical AI Architecture for Meta-Described Local Dynamic Maps in Autonomous Driving. IIAI-AAI 2024: 595-600 - [c54]Kaoru Yokogawa, Masashi Hiroishi, Sousuke Arnasaki, Hirohisa Aman, Tomoyuki Yokogawa:
A Comparative Study on COSMIC FP Approximation with Deep Learning and Conventional Machine Learning. SERA 2024: 346-351 - [c53]Pattara Leelaprute, Yuki Kase, Sousuke Amasaki, Hirohisa Aman, Tomoyuki Yokogawa:
A Multi - Aspect Evaluation of DL-based SQLi Attack Detection Models. SERA 2024: 352-355 - [c52]Yahiro Mori, Hirohisa Aman, Sousuke Amasaki, Tomoyuki Yokogawa, Minoru Kawahara:
An Application of Program Slicing and CodeBERT to Distill Variables With Inappropriate Names. SERA 2024: 356-361 - 2023
- [j10]Hirohisa Aman, Sousuke Amasaki, Tomoyuki Yokogawa, Minoru Kawahara:
An automated detection of confusing variable pairs with highly similar compound names in Java and Python programs. Empir. Softw. Eng. 28(5): 108 (2023) - [j9]Kosuke Ohara, Hirohisa Aman, Sousuke Amasaki, Tomoyuki Yokogawa, Minoru Kawahara:
A Comparative Study of Data Collection Periods for Just-In-Time Defect Prediction Using the Automatic Machine Learning Method. IEICE Trans. Inf. Syst. 106(2): 166-169 (2023) - [j8]Sousuke Amasaki, Tomoyuki Yokogawa, Hirohisa Aman:
An Evaluation of Word Embeddings on Vulnerability Prediction with Software Metrics. WiPiEC Journal 9(2) (2023) - [c51]Yuki Fushihara, Hirohisa Aman, Sousuke Amasaki, Tomoyuki Yokogawa, Minoru Kawahara:
A Trend Analysis of Test Smells in Python Test Code Over Commit History. SEAA 2023: 310-314 - [c50]Ryugo Tanaka, Tomoyuki Yokogawa, Sousuke Amasaki, Hirohisa Aman, Kazutami Arimoto:
Applying Symbolic Model Checking to Node-graph Style Game Scripts with Time Constraints. GCCE 2023: 881-884 - [c49]Tomoya Kubo, Tomoyuki Yokogawa, Kazutami Arimoto, Masaki Hokari, Isao Kayano:
Enhancing the Generalization Performance of Drowsiness Estimation AI in Drivers Using Time-Series Data from FAUs with Limited Datasets. IIAI-AAI-Winter 2023: 165-170 - [c48]Shinnosuke Irie, Hirohisa Aman, Sousuke Amasaki, Tomoyuki Yokogawa, Minoru Kawahara:
A Comparative Study of Hybrid Fault-Prone Module Prediction Models Using Association Rule and Random Forest. WSSE 2023: 33-38 - 2022
- [j7]Isamu Hasegawa, Tomoyuki Yokogawa:
Formal Verification for Node-Based Visual Scripts Using Symbolic Model Checking. IEICE Trans. Inf. Syst. 105-D(1): 78-91 (2022) - [c47]Tenma Kitai, Hirohisa Aman, Sousuke Amasaki, Tomoyuki Yokogawa, Minoru Kawahara:
Have Java Production Methods Co-Evolved With Test Methods Properly?: A Fine-Grained Repository-Based Co-Evolution Analysis. SEAA 2022: 120-124 - [c46]Sousuke Amasaki, Hirohisa Aman, Tomoyuki Yokogawa:
An Evaluation of Effort-Aware Fine-Grained Just-in-Time Defect Prediction Methods. SEAA 2022: 209-216 - [c45]Kazuma Toyota, Tomoyuki Yokogawa, Sousuke Amasaki, Hirohisa Aman, Kazutami Arimoto:
A Visual Modeling Environment for the nuXmv Model Checker Intended for Novice Users. IIAI-AAI 2022: 684-685 - [c44]Kazuki Wayama, Tomoyuki Yokogawa, Sousuke Amasaki, Hirohisa Aman, Kazutami Arimoto:
Verifying Game Logic in Unreal Engine 5 Blueprint Visual Scripting System Using Model Checking. ASE 2022: 213:1-213:8 - [c43]Sousuke Amasaki, Hirohisa Aman, Tomoyuki Yokogawa:
An Evaluation of Cross-Project Defect Prediction Approaches on Cross-Personalized Defect Prediction. PROFES 2022: 433-448 - 2021
- [c42]Sousuke Amasaki, Hirohisa Aman, Tomoyuki Yokogawa:
A Preliminary Evaluation of CPDP Approaches on Just-in-Time Software Defect Prediction. SEAA 2021: 279-286 - [c41]Hirohisa Aman, Sousuke Amasaki, Tomoyuki Yokogawa, Minoru Kawahara:
An Investigation of Compound Variable Names Toward Automated Detection of Confusing Variable Pairs. ASE Workshops 2021: 133-137 - [c40]Sousuke Amasaki, Hirohisa Aman, Tomoyuki Yokogawa:
Searching for Bellwether Developers for Cross-Personalized Defect Prediction. PROFES 2021: 183-198 - [c39]Hirohisa Aman, Sousuke Amasaki, Tomoyuki Yokogawa, Minoru Kawahara:
A Large-Scale Investigation of Local Variable Names in Java Programs: Is Longer Name Better for Broader Scope Variable? QUATIC 2021: 489-500 - [i1]Isamu Hasegawa, Tomoyuki Yokogawa:
Formal Verification for Node-Based Visual Scripts Using Symbolic Model Checking. CoRR abs/2103.11618 (2021) - 2020
- [j6]Nao Igawa, Tomoyuki Yokogawa, Sousuke Amasaki, Masafumi Kondo, Yoichiro Sato, Kazutami Arimoto:
Symbolic Representation of Time Petri Nets for Efficient Bounded Model Checking. IEICE Trans. Inf. Syst. 103-D(3): 702-705 (2020) - [j5]Hirohisa Aman, Sousuke Amasaki, Tomoyuki Yokogawa, Minoru Kawahara:
Empirical study of abnormality in local variables and its application to fault-prone Java method analysis. J. Softw. Evol. Process. 32(4) (2020) - [c38]Masanao Asato, Hirohisa Aman, Sousuke Amasaki, Tomoyuki Yokogawa, Minoru Kawahara:
A Mahalanobis Distance-Based Integration of Suspicious Scores For Bug Localization. APSEC 2020: 475-479 - [c37]Hirohisa Aman, Sousuke Amasaki, Tomoyuki Yokogawa, Minoru Kawahara:
A Comparative Study of Vectorization-Based Static Test Case Prioritization Methods. SEAA 2020: 80-88 - [c36]Sousuke Amasaki, Hirohisa Aman, Tomoyuki Yokogawa:
On the Effects of File-level Information on Method-level Bug Localization. SEAA 2020: 314-321 - [c35]Hayato Naito, Tomoyuki Yokogawa, Nao Igawa, Sousuke Amasaki, Hirohisa Aman, Kazutami Arimoto:
A Node-Style Visual Programming Environment for the nuXmv Model Checker. GCCE 2020: 71-75 - [c34]Tomoki Kobayashi, Tomoyuki Yokogawa, Nao Igawa, Yoichiro Sato, Kimihoro Sugino, Hiroshi Miyata, Satoshi Fujii, Kazutami Arimoto:
A Edge Master Computing for Pineapple Monitoring System with Drone and Data-management. IIAI-AAI 2020: 404-407 - [c33]Nao Igawa, Tomoyuki Yokogawa, Mami Takahashi, Kazutami Arimoto:
Model Checking of Visual Scripts Created by UE4 Blueprints. IIAI-AAI 2020: 512-515 - [c32]Sousuke Amasaki, Hirohisa Aman, Tomoyuki Yokogawa:
An exploratory study on applicability of cross project defect prediction approaches to cross-company effort estimation. PROMISE 2020: 71-80
2010 – 2019
- 2019
- [c31]Hirohisa Aman, Sousuke Amasaki, Tomoyuki Yokogawa, Minoru Kawahara:
Empirical Study of Fault Introduction Focusing on the Similarity among Local Variable Names. QuASoQ@APSEC 2019: 3-11 - [c30]Hirohisa Aman, Sousuke Amasaki, Tomoyuki Yokogawa, Minoru Kawahara:
A Survival Analysis-Based Prioritization of Code Checker Warning: A Case Study Using PMD. BCD (selected papers) 2019: 69-83 - [c29]Sousuke Amasaki, Tomoyuki Yokogawa, Hirohisa Aman:
Towards Better Effort Estimation with Cross-Project Defect Prediction Approaches. EASE 2019: 357-360 - [c28]Sousuke Amasaki, Hirohisa Aman, Tomoyuki Yokogawa:
A Comparative Study of Vectorization Methods on BugLocator. SEAA 2019: 236-243 - [c27]Isamu Hasegawa, Tomoyuki Yokogawa:
Automatic Verification for Node-Based Visual Script Notation Using Model Checking. ICFEM 2019: 52-68 - [c26]Akira Matsumoto, Tomoyuki Yokogawa, Sousuke Amasaki, Hirohisa Aman, Kazutami Arimoto:
Consistency Verification of UML Sequence Diagrams Modeling Wireless Sensor Networks. IIAI-AAI 2019: 458-461 - [c25]Tomoki Kobayashi, Tomoyuki Yokogawa, Nao Igawa, Yoichiro Sato, Satoshi Fujii, Kazutami Arimoto:
A Compact Low Power AI Module Mounted on Drone for Plant Monitor System. IIAI-AAI 2019: 1081-1082 - [c24]Sousuke Amasaki, Tomoyuki Yokogawa, Hirohisa Aman:
Applying Cross Project Defect Prediction Approaches to Cross-Company Effort Estimation. PROMISE 2019: 76-79 - 2018
- [j4]Kazuki Yamauchi, Hirohisa Aman, Sousuke Amasaki, Tomoyuki Yokogawa, Minoru Kawahara:
An Entropy-Based Metric of Developer Contribution in Open Source Development and Its Application toF ault-ProneP rogram Analysis. Int. J. Networked Distributed Comput. 6(3): 118-132 (2018) - [c23]Hirohisa Aman, Sousuke Amasaki, Tomoyuki Yokogawa, Minoru Kawahara:
A Doc2Vec-Based Assessment of Comments and Its Application to Change-Prone Method Analysis. APSEC 2018: 643-647 - [c22]Kazuki Yamauchi, Hirohisa Aman, Sousuke Amasaki, Tomoyuki Yokogawa, Minoru Kawahara:
Fault-Prone Source File Analysis Focusing on the Contribution Entropy in Open Source Development. BCD 2018: 7-14 - [c21]Keiichiro Tashima, Hirohisa Aman, Sousuke Amasaki, Tomoyuki Yokogawa, Minoru Kawahara:
Fault-Prone Java Method Analysis Focusing on Pair of Local Variables with Confusing Names. SEAA 2018: 154-158 - [c20]Nao Igawa, Tomoyuki Yokogawa, Sousuke Amasaki, Kiyotaka Komoku, Yoichiro Sato, Kazutami Arimoto:
Interpolation Based Unbounded Model Checking for Time Petri Nets. GCCE 2018: 619-623 - 2017
- [c19]Yuto Miyake, Sousuke Amasaki, Tomoyuki Yokogawa, Hirohisa Aman:
An Empirical Study on Relationships between Comments and Design Properties. ACIT/CSII/BCD 2017: 254-259 - [c18]Hirohisa Aman, Sousuke Amasaki, Tomoyuki Yokogawa, Minoru Kawahara:
Empirical Analysis of Words in Comments Written for Java Methods. SEAA 2017: 375-379 - [c17]Sho Suzuki, Hirohisa Aman, Sousuke Amasaki, Tomoyuki Yokogawa, Minoru Kawahara:
An Application of the PageRank Algorithm to Commit Evaluation on Git Repository. SEAA 2017: 380-383 - [c16]Kazutami Arimoto, Daichi Yamashita, Nao Igawa, Tomoyuki Yokogawa, Yoichiro Sato, Isao Kayano, Akio Shiratori:
A smart low power R-R-I heartbeat monitor system with contactless UWB sensor. ISOCC 2017: 63-64 - [c15]Hirohisa Aman, Sousuke Amasaki, Tomoyuki Yokogawa, Minoru Kawahara:
Empirical Study of Abnormalities in Local Variables of Change-Prone Java Methods. ISSRE Workshops 2017: 214-221 - [c14]Hirohisa Aman, Aji Ery Burhandenny, Sousuke Amasaki, Tomoyuki Yokogawa, Minoru Kawahara:
A Health Index of Open Source Projects Focusing on Pareto Distribution of Developer's Contribution. IWESEP 2017: 29-34 - [c13]Hirohisa Aman, Sousuke Amasaki, Tomoyuki Yokogawa, Minoru Kawahara:
A Survival Analysis of Source Files Modified by New Developers. PROFES 2017: 80-88 - [c12]Seiji Yamashita, Masateru Tsunoda, Tomoyuki Yokogawa:
Visual Programming Language for Model Checkers Based on Google Blockly. PROFES 2017: 597-601 - [c11]Salilthip Phuklang, Tomoyuki Yokogawa, Pattara Leelaprute, Kazutami Arimoto:
Tool Support for Consistency Verification of UML Diagrams. PROFES 2017: 606-609 - 2016
- [c10]Hirohisa Aman, Sousuke Amasaki, Tomoyuki Yokogawa, Minoru Kawahara:
Local Variables with Compound Names and Comments as Signs of Fault-Prone Java Methods. QuASoQ/TDA@APSEC 2016: 4-11 - [c9]Daichi Okamoto, Masafumi Kondo, Tomoyuki Yokogawa, Yoshihiro Sejima, Kazutami Arimoto, Yoichiro Sato:
A Serial Booth Multiplier Using Ring Oscillator. CANDAR 2016: 458-461 - [c8]Kiyotaka Komoku, Kazutami Arimoto, Tomoyuki Yokogawa, Hitoshi Yamauchi, Yoichiro Sato, Hidekuni Takao:
3D2 processing architecture - High reliability and low power computing for novel nano tactile sensor array. ISOCC 2016: 199-200 - 2015
- [j3]Tomoyuki Yokogawa, Masafumi Kondo, Hisashi Miyazaki, Sousuke Amasaki, Yoichiro Sato, Kazutami Arimoto:
Bounded model checking of Time Petri Nets using SAT solver. IEICE Electron. Express 12(2): 20141112 (2015) - [c7]Kazuya Kawata, Sousuke Amasaki, Tomoyuki Yokogawa:
Improving Relevancy Filter Methods for Cross-Project Defect Prediction. ACIT-CSI 2015: 2-7 - [c6]Sousuke Amasaki, Kazuya Kawata, Tomoyuki Yokogawa:
Improving Cross-Project Defect Prediction Methods with Data Simplification. EUROMICRO-SEAA 2015: 96-103 - 2013
- [c5]Sousuke Amasaki, Tomoyuki Yokogawa:
The Effects of Variable Selection Methods on Linear Regression-Based Effort Estimation Models. IWSM/Mensura 2013: 98-103 - [c4]Tomoyuki Yokogawa, Sousuke Amasaki, Keisuke Okazaki, Yoichiro Sato, Kazutami Arimoto, Hisashi Miyazaki:
Consistency Verification of UML Diagrams Based on Process Bisimulation. PRDC 2013: 126-127 - 2012
- [j2]Hisashi Miyazaki, Tomoyuki Yokogawa, Sousuke Amasaki, Kazuma Asada, Yoichiro Sato:
Synthesis and Refinement Check of Sequence Diagrams. IEICE Trans. Inf. Syst. 95-D(9): 2193-2201 (2012) - [c3]Sousuke Amasaki, Tomoyuki Yokogawa:
A Study on Predictive Performance of Regression-Based Effort Estimation Models Using Base Functional Components. PROFES 2012: 350-354 - 2011
- [c2]Sousuke Amasaki, Yohei Takahara, Tomoyuki Yokogawa:
Performance Evaluation of Windowing Approach on Effort Estimation by Analogy. IWSM/Mensura 2011: 188-195
2000 – 2009
- 2002
- [j1]Tomoyuki Yokogawa, Tatsuhiro Tsuchiya, Tohru Kikuno:
Verifying Fault Tolerance of Concurrent Systems by Model Checking. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 85-A(11): 2414-2425 (2002) - 2001
- [c1]Tomoyuki Yokogawa, Tatsuhiro Tsuchiya, Tsuchiya Kikuno:
Automatic Verification of Fault Tolerance Using Model Checking. PRDC 2001: 95-102
Coauthor Index
manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from , , and to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from .
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the information given by OpenAlex.
last updated on 2024-11-11 21:31 CET by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint