Geo-Paired Information Delivery via Server-Mediated Location Processing
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Solution Overview
Problem
Current entertainment systems for travelers do not provide information about historical sites, monuments, or geographical locations as travelers pass by them, lacking integration with real-time geolocation and user preferences.
Innovation Solution
A travel-based geo-paired information system with AI integration that receives location information, processes it to identify points of interest, retrieves relevant content, and delivers it to user devices, also learning user preferences to customize content based on past interactions.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If traditional entertainment systems are used for travelers, then entertainment content can be provided, but the content does not correlate with the route travelled or provide information about historical sites and geographical locations
Solution Approach 1:
The system pre-loads geo-paired information about historical sites, monuments, and geographical locations along the traveler's route before the traveler reaches those locations. This allows the system to immediately provide relevant information when the traveler approaches a point of interest, eliminating the information gap without requiring real-time data retrieval during travel.
Solution Approach 2:
The patent introduces a server as an intermediary between the traveler's computing device and the geo-paired information database. The server receives location data from the traveler's device, queries the database for relevant information, and delivers the appropriate content. This intermediary architecture enables efficient information delivery without requiring the traveler's device to directly access or process large amounts of geographic data.
2Loss of information
If a system provides comprehensive geo-paired information about all points of interest, then travelers receive complete information, but the system complexity increases significantly
Solution Approach 1:
The patent extracts the complex database management and information processing functions from the traveler's computing device and places them on a remote server. The server handles data storage, querying, and content delivery, while the traveler's device only needs to send location data and receive content. This extraction of complexity resolves the contradiction by maintaining complete information availability while reducing the complexity burden on the traveler's device.
Solution Approach 2:
The server is designed to handle multiple functions: storing geo-paired information for numerous locations, receiving location data from various traveler devices, querying the database, and delivering customized content. This universal server architecture consolidates multiple complex functions into a single system, reducing overall system complexity while maintaining comprehensive information coverage.
3Ease of manufacture
If the system provides generic information about all locations, then implementation is simple, but user preferences and personalized experience are not addressed
Solution Approach 1:
The system implements feedback mechanisms where the traveler's computing device sends not only location data but also user preference information to the server. The server uses this feedback to customize and filter geo-paired information according to individual user preferences, delivering personalized content while maintaining a relatively simple overall system architecture.
Data Source
AI summary
Described is a travel-based geo-paired information system with AI integration. The system includes a server having a memory storing geo-paired information that includes content regarding or related to a point of interest. The system also includes a user computing device coupled to the server. The server may be programmed to receive location information from the user computing device. The server may also be programmed to automatically process the location information and determine whether a location of the user computing device is within a predetermined distance from a point of interest geolocation. Then the server may retrieve geo-paired information corresponding to or paired to the point of interest geolocation and deliver to the user computing device, for presenting, the content related to the point of interest corresponding to the location of the user computing device. The server may use AI software to generate the content stored in the server.


