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ROBUST OPTIMAL EXPERIMENTAL DESIGN FOR STUDY OF THE HUMAN HEAD-NECK TRACKING RESPONSE

机译:鲁棒优化实验设计,用于研究人头颈部跟踪响应

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摘要

In an effort to better understand the human head-neck target tracking response, we have developed a procedure for designing a robustly optimal experimental configuration for system identification. This configuration is comprised of a parametrized input sequence along with physical parameters for the experiment. We have developed both nominal and experimental models containing uncertainties for the target tracking task based on several preliminary experimental data sets, and identified a feasible population of subject controller parameters. We applied a min-max optimization scheme to minimize a performance cost over the feasible experimental configurations, while simultaneously maximizing it over the population of subject controller parameters. In this way, a minimum level of design performance for any subject within the defined population can be guaranteed. We show that in the worst-case, the performance cost is 0.473 in flexion/extension, and 0.122 in axial rotation.
机译:为了更好地了解人头颈部目标跟踪响应,我们开发了一种设计用于系统识别的强大最佳实验配置的过程。该配置包括参数化输入序列以及实验的物理参数。我们开发了基于若干初步实验数据集的目标跟踪任务的不确定性的标称和实验模型,并确定了受试者控制器参数的可行群。我们应用了MIN-MAX优化方案,以通过可行的实验配置最小化性能成本,同时在对象控制器参数的群体上同时最大化。以这种方式,可以保证在定义的人群内任何受试者的最小设计性能水平。我们表明,在最坏的情况下,屈曲/延伸的性能成本为0.473,轴向旋转0.122。

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