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Some Aspects of Optimal Human-Computer Symbiosis in Multisensor Geospatial Data Fusion

机译:多传感器地理空间数据融合中最佳人体计算机共生的一些方面

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Nowadays vast amount of the available geospatial data provides additional opportunities for the targeting accuracy increase due to possibility of geospatial data fusion. One of the most obvious operations is determining of the targets 3D shapes and geospatial positions based on overlapped 2D imagery and sensor modeling. 3D models allows for the extraction of such information about targets, which cannot be measured directly based on single non-fused imagery. Paper describes ongoing research effort at Michigan Tech attempting to combine advantages of human analysts and computer automated processing for efficient human computer symbiosis for geospatial data fusion. Specifically, capabilities provided by integration into geospatial targeting interfaces novel human-computer interaction method such as eye-tracking and EEG was explored. Paper describes research performed and results in more details.
机译:如今,由于地理空间数据融合的可能性,大量可用的地理空间数据为目标准确性增加提供了额外的机会。最明显的操作之一是基于重叠的2D图像和传感器建模确定目标3D形状和地理空间位置。 3D模型允许提取有关目标的此类信息,这些信息无法基于单个非熔融图像直接测量。纸张介绍了密歇根科技的持续研究努力,试图结合人类分析师和计算机自动化处理的优势,以实现高效人类计算机共生的地理空间数据融合。具体而言,通过集成到地理空间靶向接口提供的能力新颖的人机交互方法,如眼睛跟踪和脑电图。纸张介绍进行的研究和导致更多细节。

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