Leveraging its advanced photovoltaic modules installation capabilities, it significantly accelerated construction progress despite ground temperatures exceeding 30 degrees Celsius. The project manager of the Australian photovoltaic site praised this “new colleague,” noting: “Since this ‘hardworking worker' joined this project, the efficiency of photovoltaic module installation has markedly improved, visibly shortening the overall project timeline. It is truly impressive and highly effective.”
Since its arrival at the Australian project site in early February, the LEAPTING Automatic Navigation PV Module Mounting Robot has undergone rigorous debugging by the company's professional team. Now officially operational, the robot has not only enhanced the efficiency of module installation but also
consistently expedited project progress. As one of the pioneering teams in China to develop and produce Automatic Navigation PV Module Mounting Robots, LEAPTING's successful deployment in Australia signifies a new era of intelligent exploration and application in the photovoltaic energy sector.
With the continuous maturation and expanding application of artificial intelligence technology, LEAPTING remains committed to leveraging intelligent means to empower the manufacturing industry and achieve breakthroughs in intelligent manufacturing—this mission is reflected in the company name “LEAPTING.” Since its inception, LEAPTING has specialized in developing intelligent robots for the photovoltaic energy sector, providing efficient, stable, and safe solutions for industry.
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LEAPTING's core product, the Automatic Navigation PV Module Mounting Robot, is designed to significantly enhance the efficiency of photovoltaic module installation, reduce labor intensity, and mitigate construction safety risks. Equipped with multi-directional sensors and posture recognition technology, this robot features a high-passability chassis that enables it to operate in various complex outdoor terrains. It represents China's first photovoltaic module installation robot capable of autonomously adapting to challenging work environments. The robot's core technologies include a high-precision intelligent perception system and powerful visual large model algorithms, integrated with a 3D vision system supported by multi-modal sensors. This setup allows for real-time perception of the power station infrastructure environment, automatic identification of photovoltaic module placement and rotation angles,
and precise alignment with support inclinations, ensuring accurate control throughout the process. Compared to traditional manual installation methods, within an 8-hour workday, a single worker can install approximately 90-120 modules daily. With the use of the robot, installation efficiency increases by 3-5 times, thereby significantly reducing the overall project duration.
Against the backdrop of increasingly urgent global carbon neutrality goals, the scale of clean energy projects like photovoltaics is expanding at an unprecedented rate, with application scenarios becoming increasingly diverse and complex. With photovoltaic modules entering the 700W+ era, their size and weight have increased, placing higher demands on installation methods. Although the concept of “robotic replacement of manual installation” is still in the exploratory and refinement stage, LEAPTING firmly believes that through continuous technological innovation, the Automatic Navigation PV Module Mounting Robot will play a crucial role in the intelligent and automated development of the photovoltaic energy field. In its capacity as a “robotic colleague,” it will contribute wisdom and strength to the advancement of global clean energy.