首页> 外文会议>2016 IEEE-EMBS Conference on Biomedical Engineering and Sciences >Spatio-temporal gait parameters as estimated from wearable sensors placed at different waist levels
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Spatio-temporal gait parameters as estimated from wearable sensors placed at different waist levels

机译:时空步态参数是根据放置在不同腰围的可穿戴传感器估算的

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Wearable devices are able to capture movement-related characteristics from inertial sensors integrated in them. Many spatio-temporal parameters of gait can be estimated by the acquisition of inertial data, but their accuracy depends on the placement of the devices on the body, as well as on the numerical values chosen for the estimation techniques. In this work, three inertial sensors placed at three different heights of the trunk are used to collect data from healthy adult participants walking at three different speeds. Step length and step velocity were calculated from accelerometer data. For the estimation of these parameters high-pass filtering is required: fifteen different values of the filter cut-off frequency were analyzed for the subsequent step length estimation. The results were compared against those measured from a marker-based movement analysis system. Estimation accuracy of both step length and step velocity resulted significantly affected by both sensor location and cut-off frequency of the filter. These preliminary results suggest that placing the sensor too low leads to an increased estimation error, while frequencies up to around 1 Hz lead to acceptable results, with a significant decrease in estimation accuracy above that value.
机译:可穿戴设备能够从集成在其中的惯性传感器捕获与运动有关的特征。可以通过获取惯性数据来估算许多步态的时空参数,但其准确性取决于设备在人体上的位置以及为估算技术选择的数值。在这项工作中,三个惯性传感器放置在躯干的三个不同高度,用于收集来自以三种不同速度行走的健康成年人的数据。根据加速度计数据计算步长和步速。为了估算这些参数,需要进行高通滤波:对滤波器截止频率的15个不同值进行分析,以进行后续步长估算。将结果与通过基于标记的运动分析系统测得的结果进行比较。步长和步速的估计精度都受到传感器位置和滤波器截止频率的显着影响。这些初步结果表明,将传感器放置得过低会导致估计误差增加,而高达1 Hz的频率会导致可接受的结果,超过该值时估计精度会显着下降。

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