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An intuitive visual interface for a real-time monitoring system for human gait using IMUs

机译:直观的可视化界面,用于使用IMU进行步态实时监控系统

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A Matlab Graphical User Interface (GUI) to help monitor the human gait in real time, and to enable to better understand the information of the used Inertial Measurement Units (IMUs) system is here presented. The interface not only improved the speed of data processing, but also facilitated the interaction between the user and the system, providing a clearer change of variables and information exchange. In order to ensure a clearer and more reliable data processing an algorithmic state machine (ASM) was implemented. Data from sensors can be used to estimate the orientation of each module through the use of a complementary filter (representation achieved in Quaternions and/or Euler angles), based on previous work. Furthermore, in this article it will be presented the list of requirements built initially for the interface creation as well as the Matlab GUI, its functionalities, and its assessments. Results show quality assessment of the developed interface based on an inquiry made in a group with thirty-six participants, and the assessment of the communication protocol.
机译:本文介绍了一个Matlab图形用户界面(GUI),以帮助实时监视人的步态并更好地了解所使用的惯性测量单位(IMU)系统的信息。该界面不仅提高了数据处理的速度,而且还促进了用户与系统之间的交互,从而提供了更清晰的变量更改和信息交换。为了确保更清晰,更可靠的数据处理,实施了算法状态机(ASM)。根据以前的工作,来自传感器的数据可用于通过使用互补滤波器(以四元数和/或欧拉角表示)来估计每个模块的方向。此外,在本文中,将介绍最初为界面创建以及Matlab GUI,其功能和评估而建立的需求列表。结果显示,在一个由36名参与者组成的小组中进行的查询基础上,对开发的接口进行了质量评估,并对通信协议进行了评估。

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