DESIGN NAME: Savior
PRIMARY FUNCTION: All Terrain Modular Rescue Robot
INSPIRATION: The inspiration for this design comes from the limitations and inefficiency of traditional rescue methods when natural disasters occur frequently. Faced with complex terrain and harsh environment, traditional rescue equipment often has difficulty reaching the scene quickly, resulting in rescue delays. Therefore, the design team hopes to break through the existing technical bottlenecks through the terrain intelligent rescue robot, improve rescue efficiency, and reduce disaster losses.
UNIQUE PROPERTIES / PROJECT DESCRIPTION: Terrain adaptability can rely on LiDAR sensors. The robot automatically switches wheels and feet according to the terrain and drives in complex terrain. The modular design provides different rescue modules to meet various rescue needs. The hydrogen motor is rechargeable and can be refueled with hydrogen. It has a long endurance and can run for a long time. AI can analyze actions autonomously.
OPERATION / FLOW / INTERACTION: Start the robot and activate the core functional modules. Select the search and rescue, medical, transportation or communication module according to the mission requirements. The lidar sensor starts to monitor the terrain, and the robot switches the driving mode adaptively. The AI system analyzes the mission data and autonomously plans the action path. After completing the mission, return to the base or wait for further instructions.
PROJECT DURATION AND LOCATION: It starts from March 1, 2024 and ends on June 25, 2024, and is located at Lu Xun Academy of Fine Arts
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PRODUCTION / REALIZATION TECHNOLOGY: Manufacturing of core components such as precision robot skeletons and drive systems. AI integration enhances the robot's autonomous analysis capabilities through learning model training. Energy systems are used to develop hydrogen engine charging and endurance technologies.
SPECIFICATIONS / TECHNICAL PROPERTIES: The dimensions of the robot are 1000mm in length, 996mm in width, and 428mm in height
TAGS: Intelligent rescue, modular design, hydrogen energy, AI adaptation, disaster relief
RESEARCH ABSTRACT: This study develops a terrain intelligent rescue robot with modular design, integrated aluminum, and adaptive tire structure, which can quickly perform search and rescue, medical treatment, transportation, communication and other tasks in disaster areas.
Improve rescue efficiency, reduce casualties, and promote the development of emergency rescue technology.
CHALLENGE: How to balance the durability and maneuverability of the caster structure. How to improve the endurance of the hydrogen engine. Integrate the accuracy and stability of the AI system to work uninterruptedly in complex environments.
ADDED DATE: 2024-09-29 05:55:23
TEAM MEMBERS (15) : Jiangbo Chen, Guangpeng yue, Mingze Gao, Jingquan You, Jiaying Yu, Zhilin Jia, Zhiming Zhang, Zhen Wang, Meishuang Liu, Ze Li, Lanyu Chang, Zihan Gao, Jingqi Wu, Bo Li and Mingxi Li
IMAGE CREDITS: Mingze Gao, 2024.
PATENTS/COPYRIGHTS: Mingze Gao
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