US20250045607
2025-02-06
Physics
G06N5/046
The AI service robot is designed for use in living and working spaces, equipped with sensors and an inference engine to provide personalized services. It adapts to the preferences of room residents by learning from their interactions. The robot's capabilities include adjusting lighting, temperature, security, and wellness features autonomously. It continuously updates its knowledge base using machine learning algorithms to improve service quality over time.
This invention is a part of home, office, and industrial automation, focusing on cyber-physical systems that control various devices through computational means. It emphasizes the integration of AI expert systems with domestic robotic systems to enhance comfort and convenience in living spaces. The robot operates by adapting to its environment and user interactions, distinguishing itself from traditional automation systems that rely on pre-set commands.
Traditional home automation allows remote control of devices based on user inputs or predefined rules. However, this system introduces an "intelligent" approach, where devices adapt autonomously to environmental changes and user behavior. The robot learns continuously, improving its decision-making process without constant user intervention. This shift from "smart" to "intelligent" systems aims to provide a seamless experience in enhancing mood and productivity through environmental stimuli.
Research indicates that environmental factors like lighting, sound, and aroma significantly affect human mood and behavior. The AI service robot leverages these insights to create optimal conditions for relaxation, focus, or other desired states. By controlling these variables intelligently, the robot can subtly influence emotions and actions, making it beneficial for both personal well-being and commercial applications such as retail environments.
The robot integrates various technologies to deliver its services effectively. It uses sensors to monitor ambient conditions and adjust them as needed. For instance, lighting can be modified for intensity and color temperature to influence mood or concentration levels. Similarly, olfactory stimuli can be managed using advanced fragrance dispensing methods to evoke specific psychological responses. This comprehensive integration ensures a holistic approach to enhancing the living or working environment.