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A Model of Predictive Control in Visual Target Tracking

机译:视觉目标跟踪中的预测控制模型

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In tracking repetitive square waves, the latency of saccadic eye movement to a change in target position decreases as the tracking run progresses. The latency in the steady state takes its minimum value for frequencies between 0.5 and 1.0 Hz. A model is proposed to predict this behavior of the saccadic eye movement system. Forming an estimate of target motion and carrying out the optimal control based on the estimation are the main features of the model. The estimate, in particular that of the period of square waves, is assumed to be performed with some inevitable variance depending on the input frequency because of the sampled data nature of the system and the memory mechanism becoming more uncertain with increasing time. In relation to sinusoidal target motions, a similar model is suggested to explain the reduction of latency to the steady-state value soon after the onset of target motion. Further, the transfer characteristics in the steady state are obtained for both the open-loop and closed-loop systems. It turns out that in both cases the predictive controller can be approximated by a serial connection of a high-gain element and a predictive element.
机译:在跟踪重复方波时,随着跟踪运行的进行,眼球运动到目标位置变化的等待时间会减少。对于0.5到1.0 Hz之间的频率,稳态下的等待时间取其最小值。提出了一个模型来预测眼跳运动系统的这种行为。该模型的主要特征是形成目标运动的估计值并基于该估计值执行最佳控制。由于系统的采样数据性质以及存储机制随着时间的增加变得更加不确定,因此,尤其是对方波周期的估计被假定为根据输入频率以一些不可避免的方差进行。关于正弦目标运动,建议使用类似的模型来解释在目标运动开始后立即将等待时间减小至稳态值的情况。此外,对于开环和闭环系统均获得稳态下的传递特性。事实证明,在两种情况下,预测控制器都可以通过高增益元素和预测元素的串行连接来近似。

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