Innovative Framework for Space Exploration

Designing human-machine collaboration frameworks for deep space missions, focusing on task planning, real-time decision-making, and anomaly handling to enhance mission success and safety.

A humanoid robot with a sleek red metallic body and exposed wiring stands on a white background. It has a complex mechanical structure with various components and joints visible, including multiple wiring and cables. The robot's head includes a visor-like screen, and it appears to be equipped with various sensors and tools.
A humanoid robot with a sleek red metallic body and exposed wiring stands on a white background. It has a complex mechanical structure with various components and joints visible, including multiple wiring and cables. The robot's head includes a visor-like screen, and it appears to be equipped with various sensors and tools.

Human-Machine Collaboration

Designing frameworks for deep space exploration and real-time decision-making processes.

An astronaut in a futuristic suit stands in front of a large, mysterious golden cube with intricate designs. The surrounding landscape appears rugged and extraterrestrial, with dark, rocky terrain under a dramatic, cloudy sky.
An astronaut in a futuristic suit stands in front of a large, mysterious golden cube with intricate designs. The surrounding landscape appears rugged and extraterrestrial, with dark, rocky terrain under a dramatic, cloudy sky.
Task Planning Integration

Integrate GPT-4 for effective task planning and decision-making in missions.

Simulation Experiments

Evaluate framework effectiveness through deep space exploration mission simulations and analysis.

Fine-Tuning Optimization

Optimize GPT-4 for adaptability in various deep space exploration task scenarios.

Framework Design

Developing human-machine collaboration for deep space exploration missions.

A robot with a humanoid shape and bright blue lights for eyes stands on a wooden surface. It is mainly white with black accents and is connected with various wires. Several small robotic vehicles with electronic components are visible in the background.
A robot with a humanoid shape and bright blue lights for eyes stands on a wooden surface. It is mainly white with black accents and is connected with various wires. Several small robotic vehicles with electronic components are visible in the background.
Model Integration

Integrating GPT-4 into our framework for enhanced task planning capabilities.

Two figures in space suits stand in a futuristic room facing large windows. The view outside shows a large, detailed planet with clouds and greenery, as well as several spaceships floating nearby. The interior is sleek and metallic, with digital consoles emitting a soft glow.
Two figures in space suits stand in a futuristic room facing large windows. The view outside shows a large, detailed planet with clouds and greenery, as well as several spaceships floating nearby. The interior is sleek and metallic, with digital consoles emitting a soft glow.
Simulation Experiments

Conducting simulations to evaluate effectiveness in task completion and decision-making.