Geocoding with Geofences for Precise Location Mapping
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Solution Overview
Problem
Current geocoding methods lack precision in mapping geocodes to locations, often resulting in incorrect routing or ambiguous addressability, especially when dealing with areas like apartment complexes or property boundaries.
Innovation Solution
Associating geocodes with geofences using unique IPv6 addresses, allowing for precise location definition and metadata attachment, enabling improved naming cohesion and accuracy through the use of geofence databases and Domain Name Service (DNS) for human and machine-readable addressability.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Measurement precision
If traditional geocoding methods are used to map geocodes to locations, then the system is simple to operate, but the location accuracy and addressability precision deteriorate
Solution Approach 1:
The patent segments the geocoding system into multiple components: geofences define geographic areas, geocodes provide addressable references within those areas, and IPv6 addresses enable unique identification. This segmentation allows precise location mapping while maintaining manageable system complexity through modular architecture.
Solution Approach 2:
The patent introduces geofences as intermediary structures that bridge geocodes and physical locations. Geofences act as mediators that contain multiple geocodes within defined geographic boundaries, enabling accurate location resolution without requiring direct complex mappings between all geocodes and locations.
2Measurement precision
If geocodes are associated with geofences using unique IPv6 addresses, then the addressability precision improves, but the device complexity increases
Solution Approach 1:
The patent makes the geofence database serve multiple functions: it stores geographic boundary definitions, maintains geocode-to-location mappings, and provides IPv6 address assignments. This multi-functionality reduces the need for separate systems while achieving high addressability precision.
Solution Approach 2:
The patent uses IPv6's vast address space (excessive action) to ensure unique identification for every geocode within geofences. Rather than optimizing for minimal addresses, it allocates abundant unique identifiers, simplifying the addressing scheme while enabling precise addressability.
3Measurement precision
If multiple geocodes are assigned to define geofence boundaries, then the location definition accuracy improves, but the quantity of data increases
Solution Approach 1:
The patent nests geocodes within geofences, where multiple geocodes (child elements) are contained within a single geofence structure (parent element). This nesting organizes data hierarchically, improving location definition accuracy through multiple boundary points while managing data quantity through structured containment.
Solution Approach 2:
The patent performs preliminary organization of geocodes into geofence structures before actual location queries. By pre-defining geofences with their boundary geocodes and assigning IPv6 addresses in advance, the system prepares data efficiently, reducing the computational burden during runtime despite the large quantity of geocode data.
Data Source
AI summary
Systems and methods of registering geocodes with a geofence and delivering geocodes which define geofences to devices are described herein. Geocodes include strings of words, letters, numbers, and combinations thereof. Geocodes associated with the same or similar geofences are cohesive and provide for improved location information, with IP addresses being assigned to the geocodes.


