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Direct measurement of the system latency of gaze-contingent displays

机译:直接测量凝氧偶然显示器的系统延迟

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Gaze-contingent displays combine a display device with an eyetracking system to rapidly update an image on the basis of the measured eye position. All such systems have a delay, the system latency, between a change in gaze location and the related change in the display. The system latency is the result of the delays contributed by the eyetracker, the display computer, and the display, and it is affected by the properties of each component, which may include variability. We present a direct, simple, and low-cost method to measure the system latency. The technique uses a device to briefly blind the eyetracker system (e.g., for video-based eyetrackers, a device with infrared light-emitting diodes (LED)), creating an eyetracker event that triggers a change to the display monitor. The time between these two events, as captured by a relatively low-cost consumer camera with high-speed video capability (1,000 Hz), is an accurate measurement of the system latency. With multiple measurements, the distribution of system latencies can be characterized. The same approach can be used to synchronize the eye position time series and a video recording of the visual stimuli that would be displayed in a particular gaze-contingent experiment.We present system latency assessments for several popular types of displays and discuss what values are acceptable for different applications, as well as how system latencies might be improved.
机译:凝氧偶像显示器组合具有眼镜系统的显示装置,以基于测量的眼睛位置快速更新图像。所有这样的系统都具有延迟,系统延迟,在凝视位置的变化和显示器中的相关变化之间。系统延迟是由眼压,显示计算机和显示器贡献的延迟的结果,并且它受到每个组件的属性的影响,其可以包括可变性。我们提出了一种直接,简单,低成本的方法来测量系统延迟。该技术使用设备简要盲目地将眼科系统(例如,用于基于视频的眼科映射,具有红外发光二极管(LED)的装置),从而产生触发到显示器监视器的改变的眼科事件。这两个事件之间的时间是由具有高速视频能力(1000 Hz)的相对低成本的消费摄像机捕获的时间,是系统延迟的准确测量。通过多次测量,可以表征系统延迟的分布。相同的方法可用于同步眼睛位置时间序列和视频记录的视觉刺激,这些刺激将显示在特定的凝惊的实验中.WE为几种流行类型的显示器提供系统延迟评估,并讨论哪些值是可接受的对于不同的应用,以及如何提高系统延迟。

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