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An Environment Cognition and Motor Adaptation Model Eliciting Sensorimotor Constraints Based on Time-Series Observations

机译:基于时间序列观测的减少感觉运动约束的环境认知和运动适应模型

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摘要

Regardless of complex, diverse, dynamically changing environments, animals recognize situated worlds and respond appropriately through interaction with the environment. We investigated sentient environment cognition and motor adaptation, focusing on "automatic movement". Thanks to periodicity, environment cognition and motor adaptation of body movement to environmental perturbations is modeled relatively easily. We propose an adaptive neural oscillator model inspired by biological brainervous system for periodic motion control of physical controlled objects such as pendulums. A key concept for realizing environment cognition and motor adaptation is the context-based elicitation of sensorimotor constraints canalizing suitable periodic movement. Results of control tasks demonstrated the feasibility of our proposal.
机译:不论复杂,多样,动态变化的环境如何,动物都能识别周围的世界,并通过与环境的互动做出适当的反应。我们研究了感知环境的认知和运动适应,重点是“自动运动”。由于周期性,相对容易地建模了环境认知和身体运动对环境扰动的运动适应。我们提出了一种受生物大脑/神经系统启发的自适应神经振荡器模型,用于对诸如摆之类的物理受控对象进行周期性运动控制。实现环境认知和运动适应的一个关键概念是基于上下文的感应运动约束的激发,从而使适当的周期性运动得以进行。控制任务的结果证明了我们建议的可行性。

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