Positioning-Oriented Architecture for IoT Internet Integration
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Solution Overview
Problem
Traditional internet architecture designs fail to integrate Internet of Things (IoT) and local area networks effectively due to the lack of consideration for GPS positioning coordinates, leading to independent and irrelevant resource coordination and management.
Innovation Solution
A unified Internet integration system with a positioning-oriented architecture (POA) that includes a controllable icon positioning information management service (CIPIMS) server, icon positioning object information bus, and network applications, which manages icon positioning resources with unique identification numbers, resource spaces, and status management, enabling dynamic coordination and communication of GPS coordinates across networks.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If traditional internet architecture designs (SOA, ROA) are used, then service integration and resource management are achieved, but GPS positioning coordinates cannot be integrated with internet resources
Solution Approach 1:
The patent merges GPS positioning coordinates with internet resources by introducing a unified coordinate system that integrates satellite-based GPS coordinates with terrestrial coordinate systems. This allows any internet resource to be associated with a unique GPS coordinate, enabling location-based resource identification and management without creating entirely separate systems.
Solution Approach 2:
The patent creates a universal coordinate system that can represent both physical locations (via GPS) and logical internet resources. The coordinate system serves multiple functions: identifying physical device locations, mapping internet resources to locations, enabling location-based routing, and providing a common reference frame for integrating heterogeneous systems (IoT, traditional internet, satellite networks).
2Adaptability or versatility
If ROA is used to integrate IoT into the Internet, then resource coverage is expanded, but systematic description of fundamental issues and clear definition of resource boundaries cannot be achieved
Solution Approach 1:
The patent segments the internet resource space into discrete, locatable units by assigning unique GPS coordinates to each resource. This segmentation provides clear boundaries and systematic organization, allowing resources to be identified, categorized, and managed based on their spatial location while maintaining individual resource independence.
Solution Approach 2:
The patent introduces GPS coordinates as an intermediary layer between physical resources and internet abstraction layers. This intermediary provides a systematic framework that bridges the physical and digital domains, enabling clear definition of resource boundaries and systematic description of resource relationships without losing the benefits of ROA integration.
3Measurement precision
If traditional internet architecture is used, then internet resource management is achieved, but dynamic determination of accurate GPS coordinate positioning for internet resources cannot be performed
Solution Approach 1:
The patent enables self-service coordinate determination by allowing internet resources and IoT devices to automatically report and update their own GPS coordinates. Devices can autonomously acquire positioning information from GPS satellites or other positioning systems and register this information with the internet resource management system, eliminating the need for manual coordinate assignment.
Solution Approach 2:
The patent implements preliminary action by pre-establishing the coordinate mapping framework and positioning infrastructure before resources need to be located. GPS satellites and positioning systems are deployed in advance, and the coordinate system is pre-configured, enabling rapid and accurate coordinate determination when resources need to be identified or tracked without ad-hoc setup delays.
4Adaptability or versatility
If GPS positioning and internet architecture are kept independent, then system simplicity is maintained, but resource coordination and management across networks cannot be achieved
Solution Approach 1:
The patent adds a spatial dimension to traditional internet architecture by integrating GPS coordinates into the resource addressing and routing framework. This dimensional addition allows resources to be identified and accessed not only by logical addresses but also by their physical locations, enabling cross-network coordination while maintaining the原有 architecture's functionality.
Data Source
AI summary
A unified Internet integration system for a positioning-oriented architecture (POA) comprises a controllable icon positioning information management service (CIPIMS) server; an icon positioning object information bus; at least one icon positioning resource object; at least one network application; at least one network; wherein the POA further comprises at least one unique icon positioning identification number, at least one icon positioning resource, at least one icon positioning resource space management, at least one icon positioning resource management, at least one icon positioning external resource links with Internet protocol address, and at least one icon positioning resource status management; and the method thereof.


