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酷!人形机器人选手跑马拉松
Ren Min Wang· 2025-04-25 00:58
Core Insights - The event marked the world's first humanoid robot half marathon, showcasing advancements in robotics and technology [2][4] - The winning robot, "Tian Gong Ultra," completed the race in 2 hours, 40 minutes, and 42 seconds, highlighting the competitive capabilities of humanoid robots [2][3] Group 1: Event Overview - The half marathon took place in Beijing, featuring 20 robot teams from various regions, including Beijing, Shanghai, Guangdong, and Ningxia [2] - The race covered a distance of over 21 kilometers, with robots competing alongside human runners [2] Group 2: Robot Performance - "Tian Gong Ultra" stands approximately 1.8 meters tall and weighs around 55 kilograms, maintaining a pace of 7,000 to 8,000 meters per hour during the race [3] - The robot's development team overcame challenges related to stability, lightweight design, and heat management during prolonged movement [3] Group 3: Audience Engagement - The event garnered significant public interest, with spectators cheering for the robots, indicating a growing fascination with humanoid robotics [3][4] - Online discussions highlighted the novelty of robots participating in a marathon, reflecting a shift towards "human-robot coexistence" [4] Group 4: Industry Implications - The competition serves as a "stress test" for humanoid robots, validating their technological maturity and potential applications in various fields such as hazardous operations, smart manufacturing, and commercial services [4] - The event is seen as a step towards integrating robots into everyday life, with expectations for more innovative applications in the future [4]
人形机器人半马冠军,为什么会选择全尺寸?
量子位· 2025-04-20 13:24
Core Viewpoint - The world's first humanoid robot half marathon took place in Beijing, showcasing significant advancements in humanoid robot technology, particularly with the robot TianGong Ultra, which completed the race without remote control and set a new world record [2][3][4][6]. Group 1: Event Overview - The half marathon featured 20 humanoid robots competing alongside 12,000 human participants, highlighting the growing interest and capabilities in humanoid robotics [3]. - TianGong Ultra, developed by the Beijing Humanoid Robot Innovation Center, completed the 21-kilometer race in 2 hours, 40 minutes, and 42 seconds, marking a historic achievement in the field [3][4]. Group 2: Technical Challenges and Solutions - TianGong Ultra's design posed multiple technical challenges due to its full-size stature of 1.8 meters and weight of 55 kg, requiring advanced solutions in stability, joint drive systems, and energy management [7][9][11]. - The robot utilized a high-power integrated joint system to manage the significant weight and prevent overheating, achieving industrial-grade durability during the race [12][14]. - Innovations in the robot's leg structure, including a soft-hard coupling design, allowed for effective shock absorption and energy storage, enhancing its running capabilities [16][17]. Group 3: Intelligent Control Systems - TianGong Ultra employs a dual-brain intelligent control system, with a "large brain" for high-level task planning and environmental perception, and a "small brain" for precise movement control and dynamic balance [18][20]. - The robot's ability to adapt to complex environments is enhanced by a 3D semantic map and advanced algorithms that allow for real-time navigation and obstacle avoidance [19][22]. Group 4: Market Implications - The success of TianGong Ultra in the half marathon underscores the necessity of full-size humanoid robots for practical applications in various industries, as most existing infrastructure is designed around adult human dimensions [24][25]. - The trend towards full-size humanoid robots is being recognized globally, with companies like Tesla and Amazon also developing robots that meet similar size standards for operational efficiency [28]. - The advancements demonstrated by TianGong Ultra suggest a potential shift towards large-scale production and commercialization of humanoid robots, with 2025 being highlighted as a pivotal year for the industry [31].