arXiv:2606.00550cs.HCcs.ET2026-06中稿 · paper on the 24th …

构建四层通信架构,让新手轻松实现虚拟机器人到真实机械臂的控制

A Four-Tier Communication Architecture and Sim-to-Real Validation of a Graphical Open-Source Platform for Robotic Engineering Education

论文配图:A Four-Tier Communication Architecture and Sim-to-Real Validation of a Graphical Open-Source Platform for Robotic Engineering Education
图 1 · 摘自论文原文
  • 设计四层通信框架,连接可视化界面与真实机械臂
  • 通过仿真到真实的验证,证明通信管道足够精准可靠
  • 适合机器人教学、开源教育平台开发者参考

高校实验室中机器人实操教育难以推广的根本矛盾在于:商用数字孪生系统成本高且固化;开源机器人中间件(ROS)对初学者技术门槛过高。本文提出一种可扩展的四层通信架构,旨在构建可持续的机器人课程体系。研究聚焦于连接可视化概念环境与物理机器人终端所需的数据交换机制,以图形化开源平台(GOSP)为实现参考。框架整合3D可视化机械臂建模与稳健的ROS中间件后端,重点解决复杂通信流程的序列化、路由与封装问题。利用多轴空间轨迹进行初步的仿真到真实验证,结果表明,封装通信链路能提供足够保真度,并实现硬件无关的控制路径。该架构打通了虚拟设计与物理执行的壁垒,为工程教育提供了可行的技术基础设施。

原文摘要 · Abstract (English)

The persistent challenge in scaling authentic manipulator education within university laboratories is a structural dichotomy: commercial digital twins are often cost-prohibitive and rigidly scripted, whereas open-source robotics middleware (ROS) imposes steep technical and syntax barriers for novices. To resolve this logistical and educational friction, this paper proposes a scalable four-tier communication architecture tailored for sustainable robotic curricula. Rather than focusing on software application design, our study examines the underlying data exchange mechanisms required to bridge visual conceptual environments with physical robotic endpoints, utilizing the Graphical Open-Source Platform (GOSP) as a reference implementation. Our work details the framework's technical integration of 3D visual armature modeling with a robust ROS middleware backend, emphasizing the serialization, routing, and encapsulation of intricate communication routines. Preliminary sim-to-real validation using multi-axis spatial trajectories confirms that encapsulating these communication pipelines provides sufficient fidelity and a hardware-agnostic pathway. By bridging virtual design and physical execution, our architectural blueprint offers a viable infrastructure for engineering education.

机器人教育通信架构ROS仿真到真实

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