Yuejia Lingdong made its debut at the 2025 Urban High Quality Development Conference, empowering urban industry upgrading with quadruped robots
2025-12-29
On December 27, 2025, the "2025 Urban High Quality Development and International Cooperation Conference" was held in Shenzhen. The conference, with the theme of "Intelligent Connected Future · New Urban Development", gathered government representatives, experts, scholars, and industry leaders from multiple cities across the country, focusing on digital technology driving urban innovation and high-quality development, and jointly exploring new paths for artificial intelligence driven urban development. As a technology enterprise specializing in the research and development of quadruped robots and scene implementation, Yuejia Lingdong not only demonstrated the high maneuverability and collaborative ability of robotic dogs at the conference, but also systematically elaborated on the company's deep practice in key fields such as power, energy, and emergency response during the AI roundtable dialogue, focusing on the true connotation of "empowerment". ▲ The live dynamic performance of the conference presents the beauty of scientific and technological collaboration, interprets the cutting-edge capabilities of physical intelligence. Before the round table dialogue of "scene driven ecological collaboration - global practice and local innovation of AI enabled urban high-quality development", the Yuejia Smart Team arranged a dynamic performance with quadruped robots that integrates technology, collaboration and viewing. The robotic dog swarm synchronously completes a series of movements such as movement, turning, posture adjustment, and obstacle simulation crossing in the rhythm of music, accurately demonstrating its technological maturity in complex instruction parsing, real-time environment perception, and multi-agent collaborative control. The performance not only enlivened the atmosphere of the venue, but also conveyed the potential of "embodied intelligence" for autonomous operation and collaborative execution in unstructured environments to government representatives and corporate guests through tangible and visible forms, laying a scene based cognitive foundation for subsequent discussions on technology implementation. ▲ Robot dog performance breaks through the operation limit of complex environment and redefines the connotation of "machine generation". In the round table dialogue entitled "scene driven · ecological collaboration - global practice and local innovation of AI enabled cities' high-quality development", Liu Liang, CEO of Yuejia Lingdong, pointed out that the company's understanding of "empowerment" has gone beyond the conceptual stage and entered a deep-water area to solve "real problems" and create "real value". Its core lies in breaking through the operational limits of traditional automation equipment and humans in complex and unstructured environments. Liu Liang, CEO of Yuejia Lingdong, used power system inspection as an example to analyze the problems of high risk, low efficiency, and data silos in traditional manual inspection. By deploying AI quadruped robots with all terrain mobility capabilities, a fundamental shift from "human adventure" to "machine for human" collaborative operations can be achieved. Robots can autonomously enter high-risk areas such as substations, mountainous power lines, and cable corridors, equipped with various types of sensors to perform inspection tasks, transforming workers from "frontline operators" to "rear commanders and data analysts". While improving safety, they achieve "human-machine collaboration, human safety, and machine risk management". Liu Liang further explained that quadruped robots bring not only automation, but also cognitive intelligence. Through onboard AI algorithms, robots can recognize device status, locate hotspots, and analyze abnormal voiceprints in real-time while moving, transforming the traditional monthly "periodic snapshot" inspection into high-frequency, continuous "full-time panoramic perception". During this process, the robot continuously generates structured multimodal data streams and forms a device lifecycle health record. Based on these data, the backend AI analysis platform can achieve dynamic evaluation and fault prediction of equipment status, promoting the shift of operation and maintenance mode from traditional "planned maintenance" to "predictive maintenance". Expanding into multiple industries to create a city level high-risk operation robot solution for electricity. Currently, Yuejia Lingdong has validated the mature "robot+AI+platform" mode in power inspection and expanded it to fields such as oil and gas chemical industry, emergency rescue, and public safety. In complex and high-risk scenarios such as explosion-proof tank areas, post disaster sites, and border mountains, quadruped robots are gradually replacing manual labor to perform tasks such as gas detection, disaster reconnaissance, and security patrols, continuously expanding the digital boundaries of urban safety and governance. Liu Liang emphasized that quadruped robots unlock the ability to perform continuous, intelligent, and digital tasks in complex, unstructured, and high-risk physical spaces. It not only extends human limbs and senses, but also reconstructs the risk distribution, data flow, and value creation process of traditional operations by embedding industry knowledge, integrating multimodal perception, and connecting intelligent analysis platforms. In the future, Yuejia Lingdong will continue to focus on the deep integration of technology and scenarios, and work with more cities and industry partners to promote the large-scale implementation of embodied intelligence in key areas, building a solid, intelligent, and reliable technological foundation for high-quality urban development.
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