Wang Fang, Skubic Marjorie, Rantz Marilyn, Cuddihy Paul E
IEEE Trans Biomed Eng. 2014 Sep;61(9):2434-43. doi: 10.1109/TBME.2014.2319333. Epub 2014 Apr 23.
In this paper, we propose a pulse-Doppler radar system for in-home gait assessment of older adults. A methodology has been developed to extract gait parameters including walking speed and step time using Doppler radar. The gait parameters have been validated with a Vicon motion capture system in the lab with 13 participants and 158 test runs. The study revealed that for an optimal step recognition and walking speed estimation, a dual radar set up with one radar placed at foot level and the other at torso level is necessary. An excellent absolute agreement with intraclass correlation coefficients of 0.97 was found for step time estimation with the foot level radar. For walking speed, although both radars show excellent consistency they all have a system offset compared to the ground truth due to walking direction with respect to the radar beam. The torso level radar has a better performance (9% offset on average) in the speed estimation compared to the foot level radar (13%-18% offset). Quantitative analysis has been performed to compute the angles causing the systematic error. These lab results demonstrate the capability of the system to be used as a daily gait assessment tool in home environments, useful for fall risk assessment and other health care applications. The system is currently being tested in an unstructured home environment.
在本文中,我们提出了一种用于老年人居家步态评估的脉冲多普勒雷达系统。已开发出一种方法,可使用多普勒雷达提取包括步行速度和步时在内的步态参数。在实验室中,利用Vicon动作捕捉系统对13名参与者进行了158次测试运行,对步态参数进行了验证。研究表明,为了实现最佳的步识别和步行速度估计,需要设置双雷达,一个雷达放置在脚部高度,另一个放置在躯干高度。脚部高度雷达在步时估计方面与组内相关系数为0.97的结果具有出色的绝对一致性。对于步行速度,尽管两个雷达都显示出出色的一致性,但由于步行方向相对于雷达波束的关系,与地面真值相比它们都存在系统偏差。与脚部高度雷达(13%-18%的偏差)相比,躯干高度雷达在速度估计方面具有更好的性能(平均偏差9%)。已进行定量分析以计算导致系统误差的角度。这些实验室结果证明了该系统作为家庭环境中日常步态评估工具的能力,可用于跌倒风险评估和其他医疗保健应用。该系统目前正在非结构化家庭环境中进行测试。