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Toward Use of Facial Thermal Features in Dynamic Assessment of Affect and Arousal Level

机译:在情感和觉醒水平的动态评估中使用面部热特征

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Automated assessment of affect and arousal level can help psychologists and psychiatrists in clinical diagnoses; and may enable affect-aware robot-human interaction. This work identifies major difficulties in automating affect and arousal assessment and attempts to overcome some of them. We first analyze thermal infrared images and examine how changes in affect and/or arousal level would cause hæmodynamic variations, concentrated along certain facial muscles. These concentrations are used to measure affect/arousal induced facial thermal variations. In step-1 of a 2-step pattern recognition schema, `between-affect' and `between-arousal-level' variations are used to derive facial thermal features as Principal Components (PCs) of the facial thermal measurements. The most influential of these PCs are used to cluster the feature space for different affects and subsequently assign a set of thermal features to an affect cluster. In step-2, affect clusters are partitioned into high, medium and mild arousal levels. The distance between a test face vector and the centroids of sub-clusters at three arousal levels belonging to a single affective state, identified from step-1, is used to determine the arousal level of the identified affective state.
机译:对情绪和唤醒水平的自动评估可以帮助心理学家和精神科医生进行临床诊断;并可以实现情感感知机器人与人的互动。这项工作确定了自动化情绪和唤醒评估的主要困难,并试图克服其中的一些困难。我们首先分析热红外图像,并检查影响和/或唤醒水平的变化如何引起沿某些面部肌肉集中的血液动力学变化。这些浓度用于测量影响/引起的面部热变化。在两步模式识别方案的第1步中,“影响之间”和“听觉水平之间”的变化用于导出面部热特征,作为面部热测量的主要成分(PC)。这些PC中最具影响力的PC用于将特征空间聚类用于不同的效果,然后将一组热特征分配给效果聚类。在步骤2中,将情感簇分为高,中和轻度唤醒水平。从步骤1识别的,在属于单个情感状态的三个觉醒级别上,测试面部向量与子簇的质心之间的距离用于确定所识别出的情感状态的觉醒级别。

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