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Research Fellow (Computer Science)

School of Computing

Singapore

On-site

SGD 20,000 - 60,000

Full time

21 days ago

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Job summary

An innovative educational institution is seeking a passionate researcher to join their dynamic team focused on cutting-edge technologies at the intersection of computer vision, natural language processing, and robotics. This role emphasizes the development of intelligent agents capable of understanding complex environments through 3D Vision-Language Alignment and scene understanding. As part of this collaborative research team, you will contribute to designing algorithms, building large-scale datasets, and developing models that push the boundaries of what's possible in intelligent systems. If you are eager to make a significant impact in the field of AI and robotics, this opportunity is perfect for you.

Qualifications

  • Strong background in computer vision and natural language processing.
  • Experience with robotics and algorithm design is essential.

Responsibilities

  • Design novel algorithms for 3D Vision-Language Alignment.
  • Develop models for 3D object grounding and scene understanding.

Skills

Computer Vision
Natural Language Processing
Robotics
Algorithm Design
Dataset Building

Education

PhD in Computer Science
Master's in Robotics or related field

Job description

We are looking for a highly motivated candidate to join our research team at the intersection of computer vision, natural language processing, and robotics. The focus will be on 3D Vision-Language Alignment (3D-VLA) and 3D Scene Understanding to support the development of intelligent agents capable of understanding and interacting with complex environments.

The candidate will contribute to designing novel algorithms, building large-scale datasets, and developing models for tasks such as:

  1. 3D object and scene grounding from textual descriptions
  2. 3D visual question answering and referring expressions
  3. Scene graph generation and semantic understanding of 3D environments
  4. Integration with robotic perception and world models
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