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首页> 外文期刊>Annals of the American Thoracic Society >Inertial Sensor-Based Slip Detection in Human Walking
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Inertial Sensor-Based Slip Detection in Human Walking

机译:人行道上基于惯性传感器的滑动检测

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Slip is one of the leading causes of fall-related injuries among occupational and elderly population. Existing research supports proactive slip and fall prevention approaches, while active strategies remain underdeveloped. Development of active slip-induced fall prevention systems requires fast, effective slip detection. This paper aims to develop a novel, real-time slip detection and estimation algorithm during human walking. The slip estimation is built on a slip dynamic model for biped walkers with the integration of the human locomotion constraints. The slip detection uses a set of wearable inertial sensors attached on the lower limbs. A slip indicator is introduced to detect the slip shortly after the heel-strike event. We present an extended Kalman filter-based slip estimation to characterize the slipping distance. One attractive property of the algorithm is its fast, accurate slip onset detection and slipping distance estimation with low-cost, nonintrusive sensing features. Experiments are conducted to validate and demonstrate the performance of the proposed slip detection and estimation scheme.
机译:滑动是职业和老年人口患有坠毁患者伤害的主要原因之一。现有研究支持主动滑动和坠落预防方法,而积极策略仍未发育。主动滑动诱导的坠落防止系统的开发需要快速,有效的滑动检测。本文旨在在人类行走期间开发一种新颖的实时滑动检测和估计算法。滑移估计建立在具有人类运动约束的搭配步行者的滑动动态模型上。滑动检测使用一组安装在下肢上的可穿戴惯性传感器。引入滑动指示器以在脚跟发生事件后不久检测滑动。我们提出了扩展的基于卡尔曼滤波器的滑动估计,以表征滑动距离。该算法的一个有吸引力的特性是其快速,精确的滑动开始检测和滑动距离估计,具有低成本,不可取的传感功能。进行实验以验证并证明所提出的滑动检测和估计方案的性能。

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