In this article, a floating robotic emulation platform for a virtual demonstration of satellite motion in space is presented. The robotic platform design is characterized by its friction-less, levitating, yet planar motion over a hyper-smooth surface. The robotic platform, integrated with sensor and actuator units, is fully designed and manufactured from the Robotics and Artificial Intelligence Team at Lule\aa\ University of Technology. A detailed design description along with the mathematical modeling describing the platform's dynamic motion is formulated. Finally, the proposed design is validated in extensive simulation studies, while the overall test bed experimental setup, as well as the vehicle hardware and software architectures, are discussed in detail. Furthermore, the entire design, including 3D printing CAD model and different testbed elements, is provided in an open-source repository and a test campaign is used to showcase its capabilities and illustrate its operations.
翻译:本篇文章介绍了空间卫星运动虚拟演示的浮动机器人模拟平台;机器人平台的设计特点是无摩擦、悬浮,但在超悬浮表面的平滑运动;机器人平台与传感器和动力装置相结合,完全由Luleaa/Technology的机器人和人工智能小组设计和制造;详细设计说明以及描述平台动态运动的数学模型;最后,在广泛的模拟研究中,对拟议设计进行了验证,同时详细讨论了整个测试床实验设置以及车辆硬件和软件结构;此外,整个设计,包括3D打印CAD模型和不同的试样元件,在开放源存储库中提供,测试活动用来展示其能力并展示其操作。