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Yingjie Liu

7 accepted papers

2026

Curvature-Aware Captioning: Leveraging Geodesic Attention for 3D Scene Understanding

CVPR 2026

Accurate 3D scene description is fundamental to robotic navigation and augmented reality, yet current dense captioning methods face significant limitations in processing sparse point cloud data.Existing approaches that apply Euclidean embedding spaces struggle to simultaneously preserve fine-grained

Cited by 0SourceScholar
2025

CE-FFT: Communication-Efficient Federated Fine-Tuning for Large Language Models via Quantization and In-Context Learning

ICASSP 2025accepted

Although Federated Fine-Tuning (FFT) facilitates the fine-tuning of Large Language Models (LLMs) across data owners without compromising their privacy, it suffers from severe communication overheads caused by numerous parameters of LLMs even with Parameter-Efficient Fine-Tuning (PEFT) methods. To ad…

Cited by 0SourceScholar
2025

Face Forgery Video Detection via Temporal Forgery Cue Unraveling

CVPR 2025poster

Face Forgery Video Detection (FFVD) is a critical yet challenging task in determining whether a digital facial video is authentic or forged. Existing FFVD methods typically focus on isolated spatial or coarsely fused spatiotemporal information, failing to leverage temporal forgery cues thus resultin…

2025

R2Det: Exploring Relaxed Rotation Equivariance in 2D Object Detection

ICLR 2025poster

Group Equivariant Convolution (GConv) empowers models to explore underlying symmetry in data, improving performance. However, real-world scenarios often deviate from ideal symmetric systems caused by physical permutation, characterized by non-trivial actions of a symmetry group, resulting in asymmet…

2025

Relaxed Rotational Equivariance via G-Biases in Vision

AAAI 2025technical

Group Equivariant Convolution (GConv) can capture rotational equivariance from original data. It assumes uniform and strict rotational equivariance across all features as the transformations under the specific group. However, the presentation or distribution of real-world data rarely conforms to str…

2024

Social Lode: Human Trajectory Prediction with Latent Odes

ICASSP 2024accepted

Human trajectory prediction is crucial in human-computer interaction and even in the safety of autonomous driving. In this work, A new method, called Social Latent Ordinary Differential Equation (Social LODE), is introduced for predicting human trajectories. The backbone of Social LODE consists of a…

Cited by 0SourceScholar