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Adaptive method for real-time gait phase detection based on ground contact forces

机译:基于地面接触力的实时步态相位自适应检测方法

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A novel method is presented to detect real-time gait phases based on ground contact forces (GCFs) measured by force sensitive resistors (FSRs). The traditional threshold method (TM) sets a threshold to divide the GCFs into on-ground and off-ground statuses. However, TM is neither an adaptive nor real-time method. The threshold setting is based on body weight or the maximum and minimum GCFs in the gait cycles, resulting in different thresholds needed for different walking conditions. Additionally, the maximum and minimum GCFs are only obtainable after data processing. Therefore, this paper proposes a proportion method (PM) that calculates the sums and proportions of GCFs wherein the GCFs are obtained from FSRs. A gait analysis is then implemented by the proposed gait phase detection algorithm (GPDA). Finally, the PM reliability is determined by comparing the detection results between PM and TM. Experimental results demonstrate that the proposed PM is highly reliable in all walking conditions. In addition, PM could be utilized to analyze gait phases in real time. Finally, PM exhibits strong adaptability to different walking conditions. (C) 2014 Elsevier B.V. All rights reserved.
机译:提出了一种新颖的方法来基于力敏感电阻(FSR)测量的地面接触力(GCF)检测实时步态相位。传统阈值方法(TM)设置了一个阈值,将GCF分为地面状态和地面状态。但是,TM既不是自适应方法也不是实时方法。阈值设置基于体重或步态周期中的最大GCF和最小GCF,导致不同的步行条件需要不同的阈值。此外,最大和最小GCF只能在数据处理之后获得。因此,本文提出了一种比例法(PM),用于计算GCF的总和和比例,其中GCF是从FSR获得的。然后通过提出的步态相位检测算法(GPDA)进行步态分析。最后,通过比较PM和TM之间的检测结果来确定PM可靠性。实验结果表明,提出的PM在所有步行条件下都是高度可靠的。此外,PM可用于实时分析步态阶段。最后,PM对不同的步行条件具有很强的适应性。 (C)2014 Elsevier B.V.保留所有权利。

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