基于集成远程控制的人机界面在教育中的应用

Xuetao Duan, Yun-ling Wang, Wei Dou, Rajeev Kumar, Niti Saluja
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引用次数: 0

摘要

具有移动用户交互功能的便携式接口机械臂在现代世界得到了广泛的应用。教学机器人在具有挑战性的大流行病中得到了应用,但由于数学公式的原因,它仍然具有挑战性。本文利用增强现实(AR)概念,使用蓝牙通信进行基于远程控制的人机交互。提出的框架包含不同的模块,如机器人手臂控制,调节器模块和远程便携式智能手机应用程序,用于设想机器人手臂点的实时相关性。这种新颖的方法将AR创新融入便携式应用程序,允许与实际物理平台进行持续的虚拟协调。在误差和损失分别保持在0.194和0.183的情况下,仿真结果在测试阶段的准确率为96.94%。所提出的接口在实时变化环境下的教学应用中结果一致,优于现有方法,准确率提高13.4
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Integrated Remote Control-Based Human-Robot Interface for Education Application
Portable interfaced robot arms equipped with mobile user interactions are significantly being utilized in modern world. The application of teaching robotics is being used in challenging pandemic situation but it is still challenging due to mathematical formulation. This article utilizes the augmented reality (AR) concept for remote control-based human-robot interaction using the Bluetooth correspondence. The proposed framework incorporates different modules like a robot arm control, a regulator module and a distant portable smartphone application for envisioning the robot arm points for its real-time relevance. This novel approach fuses AR innovation into portable application which permit the continuous virtual coordination with actual physical platform. The simulation yields effective outcomes with 96.94% accuracy for testing stage while maintaining error and loss values of 0.194 and 0.183 respectively. The proposed interface gives consistent results for teaching application in real time changing environment by outperforming existing methods with an accuracy improvement of 13.4
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