Random Address Object Access System
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Solution Overview
Problem
Current methods for accessing objects over a network are cumbersome due to the need for authentication and are prone to fraudulent activities, requiring complex management and integration of access lists, which often necessitate the involvement of support teams and developers.
Innovation Solution
A distributed data processing system that generates unique, random addresses for objects, allowing secure access without login credentials, with address resolution modules matching these addresses to provide access while monitoring and managing access scope automatically, thus isolating and separating user access independently.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If authentication (username and password) is used to access objects over a network, then security is improved, but ease of operation deteriorates due to cumbersome management and fraudulent activities
Solution Approach 1:
The patent extracts the authentication credentials (username and password) from the access process entirely. Instead of requiring users to log in with credentials, the system uses anonymous access where the object itself carries its own identification and access control information, eliminating the need for traditional authentication while maintaining security
Solution Approach 2:
The patent introduces an intermediary mechanism where the object acts as a mediator between the user and the access control system. The object contains embedded access control lists and authorization information, allowing the system to verify access rights without requiring user authentication, thus simplifying the process while maintaining security
2Reliability
If access control lists are integrated and synchronized across entities, then access management is improved, but device complexity deteriorates due to required integration and synchronization
Solution Approach 1:
The patent segments the access control information from the central system and embeds it directly within each object. Each object contains its own access control list and authorization data, eliminating the need for centralized integration and synchronization of access lists across multiple systems, thus reducing device complexity while maintaining access management integrity
Solution Approach 2:
The patent applies local quality by placing access control information locally within each object rather than maintaining it centrally. Each object has its own embedded access control list that is specific to that object, allowing independent access management without requiring system-wide integration or synchronization, thereby reducing complexity
3Reliability
If support teams and developers are employed to manage access, then reliability of access control is improved, but loss of time deteriorates due to human intervention requirements
Solution Approach 1:
The patent implements self-service by enabling the system to automatically manage access control without human intervention. The embedded access control lists and authorization mechanisms within objects allow the system to autonomously verify access rights, grant or deny access, and manage permissions, eliminating the need for support teams and developers while maintaining reliable access control and reducing time loss
Data Source
AI summary
A system and method for providing access to an object over a network may comprise hosting an object on a distributed data processing system accessible over the network, the object contained within a cell; generating, by a cell access provider, a unique and random address for the cell containing the object, utilizing an address resolution module and providing, by the cell access provider, the unique and random address to a computing device of a unique consumer; and upon receipt of the unique and random address from the unique user, matching the unique and random address with the cell to facilitate access by the unique user to the object. The object may comprise a virtual object acting as a cell for facilitating access to one or more additional objects. The virtual object cell may contain one or more unique and random addresses facilitating access to one or more additional objects.


