← Search

Haiying Xia

5 accepted papers

2026

An Efficient Token Compression Framework for Visual Object Tracking

CVPR 2026

Refining visual representations by eliminating their internal feature-level redundancy is crucial for simultaneously optimizing the performance and computational cost of models in visual tracking. To enhance their performance, many contemporary Transformer-based trackers leverage a larger number of

Cited by 0SourcecodeScholar
2026

Learning to Track Instance from Single Nature Language Description

CVPR 2026

How to achieve vision-language (VL) tracking using natural language descriptions from a video sequence without relying on any bounding-box ground truth? In this work, we achieve this goal by tackling self-supervised VL tracking, which aims to evaluate tracking capabilities guided by natural language

Cited by 0SourceScholar
2026

Let the Model Learn to Feel: Mode-Guided Tonality Injection for Symbolic Music Emotion Recognition

AAAI 2026technical

Music emotion recognition is a key task in symbolic music understanding (SMER). Recent approaches have shown promising results by fine-tuning large-scale pre-trained models (e.g., MIDIBERT, a benchmark in symbolic music understanding) to map musical semantics to emotional labels. While these models

Cited by 0SourcePDFScholar
2026

Motion-Aware Object Tracking via Motion and Geometry-Aware Cues

AAAI 2026technical

Understanding motion is essential for visual object tracking, especially in complex and dynamic scenarios. Yet, many existing methods rely on simplistic strategies such as template updates or temporal feature propagation, often overlooking the deeper modeling of motion information. To mitigate this

Cited by 0SourcePDFScholar
2026

Toward Low-Cost yet Effective Temporal Learning for UAV Tracking

CVPR 2026

The utilization of temporal information has always been an open topic in the tracking community. However, existing trackers tend to employ more and more inputs or parameters for temporal learning, hindering their deployment in resource-constrained unmanned aerial vehicles (UAVs). More importantly, t

Cited by 0SourcecodeScholar