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Force–Velocity Assessment of Caress-Like Stimuli Through the Electrodermal Activity Processing: Advantages of a Convex Optimization Approach

机译:通过皮肤电活动处理对爱抚式刺激进行力速评估:凸优化方法的优点

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摘要

We propose the use of the convex optimization-based EDA (cvxEDA) framework to automatically characterize the force and velocity of caressing stimuli through the analysis of the electrodermal activity (EDA). CvxEDA, in fact, solves a convex optimization problem that always guarantees the globally optimal solution. We show that this approach is especially suitable for the implementation in wearable monitoring systems, being more computationally efficient than a widely used EDA processing algorithm. In addition, it ensures low-memory consumption, due to a sparse representation of the EDA phasic components. EDA recordings were gathered from 32 healthy subjects (16 females) who participated in an experiment where a fabric-based wearable haptic system conveyed them caress-like stimuli by means of two motors. Six types of stimuli (combining three levels of velocity and two of force) were randomly administered over time. Performance was evaluated in terms of execution time of the algorithm, memory usage, and statistical significance in discerning the affective stimuli along force and velocity dimensions. Experimental results revealed good performance of cvxEDA model for all of the considered metrics.
机译:我们建议使用基于凸优化的EDA(cvxEDA)框架,通过对皮肤电活动(EDA)的分析来自动表征爱抚刺激的力和速度。实际上,CvxEDA解决了一个凸优化问题,该问题总是保证全局最优解。我们表明,这种方法特别适合在可穿戴监控系统中实施,比广泛使用的EDA处理算法在计算效率上更高。此外,由于EDA相位分量的稀疏表示,它确保了低内存消耗。 EDA记录来自32位健康受试者(16位女性),他们参加了一项实验,该实验中基于织物的可穿戴触觉系统通过两个电机向他们传递了像爱抚一样的刺激。随着时间的推移,随机给予六种类型的刺激(结合三种速度水平和两种力)。根据算法的执行时间,内存使用情况以及沿力和速度维度识别情感刺激的统计意义来评估性能。实验结果表明,对于所有考虑的指标,cvxEDA模型均具有良好的性能。

著录项

  • 来源
    《Human-Machine Systems, IEEE Transactions on》 |2017年第1期|91-100|共10页
  • 作者单位

    Department of Information Engineering and Research Center “E. Piaggio,” School of Engineering, University of Pisa, Pisa, Italy;

    Department of Information Engineering and Research Center “E. Piaggio,” School of Engineering, University of Pisa, Pisa, Italy;

    Department of Information Engineering and Research Center “E. Piaggio,” School of Engineering, University of Pisa, Pisa, Italy;

    Department of Information Engineering and Research Center “E. Piaggio,” School of Engineering, University of Pisa, Pisa, Italy;

    School of Computer Science and Electronic Engineering, University of Essex, Colchester, U.K.;

    Department of Information Engineering and Research Center “E. Piaggio,” School of Engineering, University of Pisa, Pisa, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Haptic interfaces; Force; Biomedical monitoring; Robots; Autoregressive processes; Convex functions; Europe;

    机译:触觉界面;力;生物医学监测;机器人;自回归过程;凸功能;欧洲;

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