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Tracking and optimal control problems in human head/eye coordination

机译:人头/眼睛协调中的跟踪和最佳控制问题

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Human head and eye rotate in coordination to rapidly project images of targets from the visual space. Once a target is fixated, the head/eye complex maintains the stability of the image, even while the head continues to move. The dynamics of the head is constrained by Donders' Law whereas the final position of the eye satisfies Listing's constraint with respect to the final position of the head. The vestibuloocular reflex rotates the eye opposite to the forward movement of the head in order to compensate and maintain image stability. Using a dynamic model of the head and eye, the eye movement is modeled as a tracking control problem, where the tracking signal depends on the head movement trajectory. The torques required for the head and eye movements are computed by minimizing a suitable cost function. The paper computes the optimal torque and compares simulation results with experimentally measured data on human head/eye movement.
机译:人的头部和眼睛协调旋转,以从视觉空间快速投射目标图像。一旦固定了目标,即使头部继续移动,头/眼复合体也可以保持图像的稳定性。头部的动力学受Donders定律的约束,而眼睛的最终位置满足了List相对于头部的最终位置的约束。前庭反射与头部的向前运动相反地旋转眼睛,以补偿并保持图像稳定性。使用头部和眼睛的动态模型,将眼睛运动建模为跟踪控制问题,其中跟踪信号取决于头部运动轨迹。头部和眼睛运动所需的扭矩是通过最小化合适的成本函数来计算的。本文计算了最佳扭矩,并将仿真结果与有关人的头部/眼睛运动的实验测量数据进行了比较。

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