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T-Rex2++: Toward Generic Object Perception via Text-Visual Prompt Synergy.
Summary
T-Rex2++ unifies object detection and segmentation using text-visual synergy. Its novel Universal Prompt enables autonomous object discovery and localization, advancing open-set perception capabilities.
Area of Science:
- Computer Vision
- Artificial Intelligence
- Machine Learning
Background:
- Traditional object perception methods struggle with rare objects using text prompts or novel objects using visual prompts.
- Existing approaches lack a unified framework for both abstract concept representation and concrete visual depiction.
Purpose of the Study:
- To introduce T-Rex2++, a unified framework for open-set object detection and instance segmentation.
- To develop a text-visual synergy mechanism for enhanced object representation.
- To enable autonomous object discovery and localization without user cues.
Main Methods:
- Implemented a text-visual synergy mechanism using contrastive learning to align modalities in a shared feature space.
- Introduced a learnable Universal Prompt to model generic objectness for autonomous perception.
- Integrated a zero-shot instance segmentation module for pixel-level synergy verification.
Main Results:
- T-Rex2++ demonstrates robust zero-shot object perception across diverse scenarios.
- The text-visual synergy effectively represents both abstract and concrete object properties.
- The Universal Prompt enables autonomous discovery and localization of arbitrary objects.
Conclusions:
- T-Rex2++ provides a versatile foundation for generic open-set object perception.
- The proposed framework successfully integrates text and visual modalities for superior performance.
- Autonomous perception capabilities are significantly advanced by the Universal Prompt.
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