Jihye Kim (Research Institute CODE, University of the Bundeswehr Munich)

DNS threats are central to cyber threat intelligence (CTI); however, access to real attack telemetry is constrained by privacy controls, operational limitations, and labeling costs—hindering reproducible research and the realistic evaluation of emerging detectors. Although a growing body of tools and ML-based generators can synthesize DNS traffic, the community still lacks a unified methodology to assess its protocol compliance, realism, semantics, and utility for defense. To address this gap, we introduce DSEF, the DNS Synthetic Traffic Evaluation Framework, a modular and generator agnostic framework for measuring the realism and defensive utility of synthetic DNS traffic. DSEF evaluates flows along four complementary axes: (i) protocol correctness, (ii) distributional realism, (iii) semantic and behavioral realism, and (iv) downstream defensive utility. By producing standardized, scenario-aware scores, DSEF enables consistent benchmarking across heterogeneous generator families. Using content-driven DNS threat scenarios, our results show that DSEF exposes distinct failure modes across replay, marginal resampling, and latent sampling generators, highlighting where synthetic traffic diverges from the reference distribution. DSEF offers a benchmark-ready foundation for the reproducible evaluation of synthetic DNS traffic and provides practical guidance for the safe and effective use of synthetic data in CTI workflows and security operations.

View More Papers

Work-in-progress: Deobfuscating Academic Email Addresses: A Security Evaluation of...

Ron Amsalem (Ariel University), Harel Berger (Ariel University)

Read More

BACnet or “BADnet”? On the (In)Security of Implicitly Reserved...

Qiguang Zhang (Southeast University), Junzhou Luo (Southeast University, Fuyao University of Science and Technology), Zhen Ling (Southeast University), Yue Zhang (Shandong University), Chongqing Lei (Southeast University), Christopher Morales (University of Massachusetts Lowell), Xinwen Fu (University of Massachusetts Lowell)

Read More

ThinkTrap: Denial-of-Service Attacks against Black-box LLM Services via Infinite...

Yunzhe Li (Shanghai Jiao Tong University), Jianan Wang (Shanghai Jiao Tong University), Hongzi Zhu (Shanghai Jiao Tong University), James Lin (Shanghai Jiao Tong University), Shan Chang (Donghua University), Minyi Guo (Shanghai Jiao Tong University)

Read More