Bird's-Eye View Interface for Remote Site Inspection
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Solution Overview
Problem
Conventional techniques for remotely checking the state of a work site, such as a construction site, are limited as they do not associate bird's-eye viewed images with detailed image information from multiple photography points, making it difficult to conduct thorough remote site checks.
Innovation Solution
An information processing method that displays a bird's-eye view with movable selection and photography point icons, allowing users to select a position and retrieve associated image information from specific photography points, enabling detailed remote site checks.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Loss of information
If only a bird's-eye photographed image is displayed without associating it with multiple photography point images, then the display is simple and easy to operate, but the detailed state of the work site cannot be remotely checked
Solution Approach 1:
The patent combines the bird's-eye photographed image with multiple photography point images into a single integrated display system. The bird's-eye view serves as the base layer showing the overall work site, while photography point icons are overlaid on this base layer to indicate locations where detailed images can be viewed. This merging allows users to access detailed information from multiple photography points without leaving the bird's-eye view context, thereby reducing information loss while maintaining system simplicity.
Solution Approach 2:
The patent introduces photography point icons as intermediary elements that mediate between the bird's-eye view and detailed photography point images. These icons serve as visual markers on the bird's-eye image that users can select to view detailed images. The intermediary icons provide a straightforward interface that connects the overall view with detailed views without requiring complex navigation or system changes.
2Loss of information
If multiple photography point images are associated with the bird's-eye view to enable detailed remote checking, then detailed site inspection is enabled, but the system complexity increases
Solution Approach 1:
The patent extracts only the essential elements needed for detailed inspection by displaying photography point icons at specific locations on the bird's-eye view. Instead of displaying all photography point images simultaneously or requiring complex navigation, the system extracts and presents only the icons representing photography points, which users can select to view detailed images. This extraction approach provides detailed information while maintaining operational simplicity.
Solution Approach 2:
The patent segments the work site information into two distinct layers: the bird's-eye view showing the overall layout, and multiple photography point images showing detailed views of specific locations. Each photography point is represented by a separate icon on the bird's-eye view, allowing users to selectively view detailed images of specific segments of the work site. This segmentation enables detailed inspection without overwhelming the user with all information at once.
3Measurement precision
If photography point icons are displayed on the bird's-eye view to indicate selectable positions, then detailed image retrieval is enabled, but the display complexity increases
Solution Approach 1:
The patent applies local quality by placing photography point icons at specific, meaningful locations on the bird's-eye view that correspond to areas of interest or potential hazard. Each icon is positioned precisely where a photography point image was captured, providing accurate position selection. The icons are displayed only at necessary locations rather than uniformly across the entire view, reducing display complexity while maintaining position selection accuracy.
Data Source
AI summary
An information processing device displays a bird's-eye view on a display of a terminal device, displays, in the bird's-eye view, a plurality of photography point icons indicating photography points and a selection icon for selecting an arbitrary position in the bird's-eye view, the selection icon being configured movably on the bird's-eye view, and the plurality of photography point icons being associated with image information indicating an image photographed at a photography point, detects a movement completion position of the selection icon, and decides one photography point icon based on the movement completion position and a position of each photography point icon, and outputs, to the display, image information associated with the one photography point icon.


