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基于LabVIEW三轴运动平台实践项目研究与实施

Research and Implementation of Three-Axis Sports Platform Practice Project Based on LabVIEW
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摘要 运动控制是虚拟仪器技术和应用课程领域的关键要素。项目深入研究以三轴丝杠运动平台为中心的综合实践项目。项目利用LabVIEW和雷赛DMC2410运动控制卡,旨在实现多样化的可控精确运动,包括点控制、连续运动、插补运动等。通过LabVIEW的QMH框架实现运动参数和轨迹的生成、运动控制的人机交互(HMI)界面,该框架有助于实时操作响应与相对较慢的机械运动的有效融合。项目创新地将各种硬件模块及其DLL库的调用等知识点融合到LabVIEW程序框架中,这种融合不仅增强了学生对理论概念的理解,也锻炼和考核了学生的综合实践能力和解决问题的能力,更进一步拓宽了学生的视野,鼓励他们全面理解运动控制背景下软件和硬件之间的相互作用。因此,三轴运动平台实践项目可以丰富教育经验,培养学生在虚拟仪器技术领域的细致入微的技能。 Motion control stands as a pivotal element within the realm of virtual instrument technology and application courses. This research delves into a comprehensive practical project centered around a three-axis screw motion platform. Leveraging LabVIEW and the LEISAI DMC2410 motion control card, the project aims to achieve diverse controllable and precise motions, encompassing point control, continuous motion, interpolation motion, and more. The generation of motion parameters and trajectories, constituting the human-computer interaction (HMI) of motion control, is realized through the QMH framework of LabVIEW. This framework facilitates an effective amalgamation of real-time operational responsiveness with the relatively slower mechanical motion. Notably, the project innovatively integrates knowledge areas such as the invocation of various hardware mod-ules and their DLL libraries into the LabVIEW program framework. This integration not only enhances students’ understanding of theoretical concepts but also exercises and assesses their com-prehensive practical abilities and problem-solving skills. The incorporation of such a multifaceted approach broadens students’ horizons, encouraging a holistic understanding of the interplay between software and hardware in the context of motion control. The Three-axis Sports Platform Practice Project thus serves as an enriching educational experience, fostering a nuanced skill set among students in the field of virtual instrument technology.
出处 《计算机科学与应用》 2023年第12期2605-2612,共8页 Computer Science and Application
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