AICRobo's first self-delivered robots successfully tested

    On October 19, 2017, AICRobo's industrial robots made their debut in a real-world setting at a renowned electronics manufacturer's factory in Shenzhen. This marked a significant milestone as the robots underwent rigorous field testing and successfully passed all evaluations, earning high praise from their partners. The test demonstrated a seamless "removal and delivery" process, proving the robots' reliability and efficiency. ![AICRobo Industrial Robot](http://i.bosscdn.com/blog/00/19/7D/D58CA00FC4m.png) This achievement followed AICRobo’s earlier success in September 2017 when its storage picking robot was tested in a major e-commerce warehouse. Building on that progress, AICRobo's latest industrial robots introduced innovative mobile applications, enhancing autonomous transport capabilities through advanced technologies like laser radar and inertial navigation. These systems not only integrate smoothly with existing workshop management systems but also simplify material handling processes, supporting enterprises in upgrading to smart factories and significantly boosting productivity. During the initial planning phase, the factory’s management team identified key areas for improvement—specifically, the material handling and transportation stages. In response, AICRobo engineers conducted extensive research and scenario analysis, leveraging their core autonomous mobile technology to develop tailored solutions. The result was a custom “autonomous handling” system, which was quickly deployed and tested on-site. The robots were programmed to navigate multiple storage and production zones based on the factory’s workflow. Upon reaching a storage area, they used secondary positioning markers to accurately locate shelves. Once loaded, the robots transported the materials to the production area, where workers simply waited for the shelves to arrive. After unloading, the robots returned the empty shelves to designated locations. Throughout the process, the robots effectively avoided various obstacles, including transparent barriers, reflective surfaces, and low-lying objects, thanks to AICRobo’s advanced autonomous navigation technology. By introducing these self-contained handling robots, AICRobo simplified the transportation process, reduced labor costs, and increased workshop efficiency. The solution required minimal changes to the existing workshop environment, keeping implementation costs manageable. This flexibility made the autonomous handling system ideal for diverse industrial automation needs. As a leading company in robotic autonomous mobility solutions, AICRobo has redefined the level of autonomy in robotics. Their integrated software and hardware architecture enables high-degree autonomy without relying on external guidance like wires or QR codes. Each component is modular, allowing for easy configuration, monitoring, and maintenance, ensuring optimal performance for different application scenarios. AICRobo’s AICANS intelligent mobile system, launched in late 2016, has evolved significantly over time. Version 2.0, released in July 2017, introduced enhanced features such as real-time localization, intelligent obstacle avoidance, path planning, and automatic charging. The system supports a range of sensors and offers secondary development interfaces, making it highly adaptable. One standout feature is the "environmental construction" function, which allows quick mapping of specific areas. Operators can customize maps, set stop points, and define restricted zones. When encountering moving obstacles, the robots use multiple sensors—including laser radar, ultrasonic, and depth cameras—to predict paths and avoid collisions intelligently. Even transparent or floating obstacles are handled seamlessly. With testing progressing smoothly in both the Shenzhen factory and well-known e-commerce warehouses, AICRobo continues to demonstrate strong performance. These real-world tests not only strengthen partnerships with leading clients but also reinforce AICRobo’s position as an industry innovator.

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