Orbital Object Tagging Interface for Synchronized Data Stitching
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Solution Overview
Problem
Existing visualization systems for tracking orbital objects lack functionality in maintaining, sorting, extracting, and displaying vast amounts of historical and real-time data in a timely and organized manner, particularly with immense datasets from petabytes or exabytes of photographic data.
Innovation Solution
A system and method for generating a visualization display that includes a hardware processor, memory, and interfaces to receive and process real-time and historical data, using algorithms to consolidate and categorize data, and generate synchronized graphs with tagging and stitching capabilities to manage and display high-dimensional data effectively.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Loss of information
If multiple graphs displaying longitude-time, longitude-latitude, and scalar-time data are generated and synchronized, then data visualization capability and analytical depth are improved, but device complexity and computational resources increase
Solution Approach 1:
The system divides complex orbital data into multiple specialized graphs (longitude-time, longitude-latitude, scalar-time), each focusing on specific data dimensions. This segmentation allows comprehensive data visualization while managing complexity through modular graph components that can be independently configured and synchronized.
Solution Approach 2:
The graphing system implements universal synchronization mechanisms where a single data update automatically refreshes all related graphs simultaneously. This multi-functional approach allows the same data processing engine to serve multiple visualization purposes, reducing overall system complexity despite the number of graphs.
2Ease of operation
If a tagging interface with stitching selector is implemented for interactive data association, then data accessibility and user interaction capability are improved, but device complexity increases
Solution Approach 1:
The stitching selector acts as an intermediary tool between the user and the complex data association process. It provides a simplified interface that mediates the linking of data points across different graphs, handling the complexity of coordinate transformations and data matching behind the scenes while presenting an easy-to-use selection mechanism to the user.
3Reliability
If vast amounts of photographic data from multiple sources are processed and displayed in real-time, then data completeness and tracking accuracy are improved, but processing time and computational resources increase
Solution Approach 1:
The system performs preliminary processing and organization of photographic data from multiple sources before real-time display. Data is pre-cataloged, pre-processed, and pre-synchronized so that when real-time tracking is needed, the system can quickly retrieve and display already-prepared information, maintaining high tracking accuracy without excessive processing delays.
Data Source
AI summary
The system is configured to generate a display of a tagging interface. The tagging interface may include a stitching selector. In response to a user selection of (1) a destination element that includes a first name identifier, (2) a source element that includes at least one of the plurality of pixels such that at least one of the plurality of pixels corresponding to longitude-time points comprising a second name identifier, and (3) the stitching selector, the system can be configured to indicate that the source element comprises the first name identifier.


