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Mingxuan Guo

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Conference Aug 2026

Dual-Encoder Model with Interactive Time Horizon for Vehicle Trajectory Prediction in Dense Traffic

Highway ramp merging zones represent a typical dense traffic scenario where complex vehicle interactions make accurate trajectory prediction particularly challenging. This paper proposes a novel dual-encoder model with an interactive time horizon mechanism to address these challenges. The model employs independent encoding channels to separately capture individual motion features and multi-vehicle interaction features, while the introduced selector enables dynamic selection of potentially interacting vehicles. Evaluated on the Chinese highway dataset Expressway-SQM2, our approach demonstrates significant improvements: the dual-encoder architecture alone reduces 5-second prediction RMSE by 29.4% compared with the baseline model, while the complete model with this mechanism achieves a 34.5% reduction. Experimental results confirm the model's effectiveness in handling complex merging scenarios and its strong generalization capability across varying traffic conditions.

Shuai-Peng Liu, Guodong Yin, Weichao Zhuang et al. · 0 citations
Preprint Jul 2026

Spectral Attack on Continuous-Variable Quantum Key Distribution Systems

Continuous-variable quantum key distribution (CVQKD) has attracted extensive attention due to its compatibility and low costs. However, bandwidth mismatch exists to varying degrees between the transmitter and receiver. This may prevent frequency components carrying modulation information from being fully perceived by the legitimate party. In this paper, we identify a practical security loophole caused by bandwidth mismatch and propose a corresponding spectral attack scheme. Different from previous approaches that exploit security loopholes to conceal the excess noise introduced by intercept-resend attacks, this scheme can directly obtain raw-key information without introducing additional disturbances. A proof-of-principle attack on a CVQKD system with filtering operation is constructed to verify the feasibility. Experimental results indicate that Eve can obtain enough information to render the system insecure if this practical security loophole is ignored. Based on the identified security loophole, corresponding defense strategies are proposed. This work helps bridge the gap between theoretical models and practical implementations, providing a reference for defense design in practical quantum communication systems.

Chen Gong, Mingxuan Guo, P. Huang et al. · 0 citations

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