| 2026 | SAC | Human vs AI: Insecure Use of Security-Sensitive Functions in AI-generated Code in Comparison to Human-written Code. | Joonku Lee, Sieun Ju, Seunghoon Woo, Heejo Lee |
| 2025 | DSN | ZCover: Uncovering Z-Wave Controller Vulnerabilities Through Systematic Security Analysis of Application Layer Implementation. | Carlos Nkuba Kayembe, Jimin Kang, Seunghoon Woo, Heejo Lee |
| 2025 | ICSE | Tiver: Identifying Adaptive Versions of C/C++ Third-Party Open-Source Components Using a Code Clustering Technique. | Youngjae Choi, Seunghoon Woo |
| 2024 | ESORICS | BloomFuzz: Unveiling Bluetooth L2CAP Vulnerabilities via State Cluster Fuzzing with Target-Oriented State Machines. | Pyeongju Ahn, Yeonseok Jang, Seunghoon Woo, Heejo Lee |
| 2024 | ICSE | CNEPS: A Precise Approach for Examining Dependencies among Third-Party C/C++ Open-Source Components. | Yoonjong Na, Seunghoon Woo, Joomyeong Lee, Heejo Lee |
| 2022 | DSN | L2Fuzz: Discovering Bluetooth L2CAP Vulnerabilities Using Stateful Fuzz Testing. | Haram Park, Carlos Nkuba Kayembe, Seunghoon Woo, Heejo Lee |
| 2021 | ACSAC | Dicos: Discovering Insecure Code Snippets from Stack Overflow Posts by Leveraging User Discussions. | Hyunji Hong, Seunghoon Woo, Heejo Lee |
| 2021 | DSN | OCTOPOCS: Automatic Verification of Propagated Vulnerable Code Using Reformed Proofs of Concept. | Seongkyeong Kwon, Seunghoon Woo, Gangmo Seong, Heejo Lee |
| 2021 | ICSE | Centris: A Precise and Scalable Approach for Identifying Modified Open-Source Software Reuse. | Seunghoon Woo, Sunghan Park, Seulbae Kim, Heejo Lee, Hakjoo Oh |
| 2017 | SP | VUDDY: A Scalable Approach for Vulnerable Code Clone Discovery. | Seulbae Kim, Seunghoon Woo, Heejo Lee, Hakjoo Oh |