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The perceptual processing of fused multi-spectral imagery

机译:融合多光谱图像的感知处理

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摘要

Multi-spectral imagery can enhance decision-making by supplying multiple complementary sources of information. However, overloading an observer with information can deter decision-making. Hence, it is critical to assess multi-spectral image displays using human performance. Accuracy and response times (RTs) are fundamental for assessment, although without sophisticated empirical designs, they offer little information about why performance is better or worse. Systems factorial technology (SFT) is a framework for study design and analysis that examines observers’ processing mechanisms, not just overall performance. In the current work, we use SFT to compare a display with two sensor images alongside each another with a display in which there is a single composite image. In our first experiment, the SFT results indicated that both display approaches suffered from limited workload capacity and more so for the composite imagery. In the second experiment, we examined the change in observer performance over the course of multiple days of practice. Participants’ accuracy and RTs improved with training, but their capacity limitations were unaffected. Using SFT, we found that the capacity limitation was not due to an inefficient serial examination of the imagery by the participants. There are two clear implications of these results: Observers are less efficient with multi-spectral images than single images and the side-by-side display of source images is a viable alternative to composite imagery. SFT was necessary for these conclusions because it provided an appropriate mechanism for comparing single-source images to multi-spectral images and because it ruled out serial processing as the source of the capacity limitation.
机译:多光谱图像可以通过提供多种互补的信息源来增强决策能力。但是,使观察者负担过多的信息会阻止决策。因此,利用人类表现评估多光谱图像显示至关重要。准确性和响应时间(RTs)是评估的基础,尽管没有复杂的经验设计,它们几乎无法提供有关性能为何会变好或变差的信息。系统析因技术(SFT)是用于研究设计和分析的框架,该框架检查观察者的处理机制,而不仅仅是整体性能。在当前的工作中,我们使用SFT将一个带有两个传感器图像的显示器与一个带有一个合成图像的显示器进行比较。在我们的第一个实验中,SFT结果表明,两种显示方法都受到工作负载容量有限的困扰,而对于合成图像而言则更为严重。在第二个实验中,我们研究了在数天的练习过程中观察者表现的变化。参加者的准确性和RT随训练而提高,但他们的能力限制不受影响。使用SFT,我们发现容量限制不是由于参与者对图像的低效率连续检查造成的。这些结果有两个明显的含义:使用多光谱图像的观察者效率不如单个图像,并且源图像的并排显示是合成图像的可行替代方案。对于这些结论来说,SFT是必要的,因为它提供了一种将单源图像与多光谱图像进行比较的合适机制,并且它排除了串行处理作为容量限制的来源。

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