Portable Geospatial Asset Embedding for Offline Access
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Solution Overview
Problem
Users face challenges in accessing and managing geospatial data on portable devices due to reliance on central servers and difficulty in handling multiple geospatial assets, especially when server access is limited or unavailable.
Innovation Solution
A system and method for creating and embedding portable geospatial assets within individualized applications, allowing users to generate or predict regions of interest and embed geospatial data subsets into standalone applications for offline access on devices like smartphones and tablets.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If users rely on central servers to access geospatial data, then data availability is maintained through centralized management, but accessibility is limited when server access is unavailable and device complexity increases due to network dependencies
Solution Approach 1:
The patent extracts geospatial data from central servers and embeds it directly into portable applications. The system creates standalone applications containing complete geospatial datasets, allowing users to access data locally without network connectivity. This extraction principle resolves the contradiction by removing the system dependency on central servers while maintaining data accessibility through local storage and processing capabilities.
Solution Approach 2:
The patent creates copies of geospatial data and embeds them within portable application packages. Instead of accessing data remotely from central servers, the system generates local copies that are self-contained within the application. This copying approach eliminates network dependency and ensures data availability offline, resolving the reliability-complexity contradiction by making data accessible without requiring complex network infrastructure.
2Ease of operation
If users access multiple geospatial assets through central servers, then data management is centralized, but ease of operation deteriorates due to difficulty in managing multiple assets on portable devices
Solution Approach 1:
The patent merges multiple geospatial assets into a single portable application package. Instead of requiring users to manage separate data files or access multiple remote assets, the system combines multiple geospatial datasets into one self-contained application that can be easily stored, transferred, and executed on portable devices. This merging principle improves ease of operation by simplifying asset management from multiple separate entities to a single integrated package.
Solution Approach 2:
The patent segments the geospatial data management system into independent portable applications. Each application is a self-contained unit that can be independently managed, transferred, and executed. This segmentation allows users to handle multiple geospatial assets as separate, manageable units rather than dealing with complex centralized data structures, thereby improving ease of operation on portable devices.
3Loss of time
If geospatial data is stored centrally on master servers, then data organization is maintained, but loss of time occurs due to network access requirements and data retrieval delays
Solution Approach 1:
The patent performs preliminary action by pre-processing and embedding geospatial data into portable applications before deployment. Instead of retrieving data from central servers during runtime, the system prepares complete data packages in advance that can be executed locally. This preliminary preparation eliminates network access requirements and data retrieval delays, resolving the time-loss contradiction by making data immediately available without requiring complex centralized storage architectures during operation.
Data Source
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AI summary
In one aspect, a computer-implemented method for providing individualized portable asset applications may generally include providing access to a master geospatial asset and receiving a user input associated with generating a portable geospatial asset based on the master geospatial asset, wherein the portable geospatial asset corresponds to a data subset of the master geospatial asset. The method may also include generating the portable geospatial asset based on the user input and embedding the portable geospatial asset within an asset application, wherein the asset application includes computer-readable instructions for rendering the portable geospatial asset. In addition, the method may include transmitting the asset application containing the portable geospatial asset to a separate computing device.