Cellular Network Access Control Schema for Secure Micro Transactions
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Solution Overview
Problem
Current digital technologies face challenges such as invasive digital advertising, inadequate online privacy, lack of micro commerce capabilities, and vulnerabilities in digital payment systems, including those related to Crypto Currencies and Direct Carrier Billing (DCB).
Innovation Solution
The proposed solution involves modifying cellular network components and elements to host access controlling schemas that transform and facilitate cellular communication signals using novel cellular communications protocols with multi-part multi-functional address signaling. This approach enables secure and efficient access control, micro billing, and seamless digital transactions.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If access controlling schemas are integrated into cellular network components, then security and privacy in digital transactions are enhanced, but device complexity increases
Solution Approach 1:
The patent merges access controlling schemas with existing cellular network components (MSC, SCP, OCS) to enhance security without requiring entirely separate systems. The access controller integrates authentication and authorization functions within the cellular network architecture, combining multiple security functions into unified components that leverage existing infrastructure.
Solution Approach 2:
The access controlling schema is designed to serve multiple functions including authentication, authorization, accounting, and support for various access methods (voice, data, messaging). This multi-functional approach allows a single integrated system to handle diverse security requirements across different service types within the cellular network.
2Measurement precision
If multi-part multi-functional address signaling is implemented, then access control precision is improved, but protocol complexity increases
Solution Approach 1:
The address signaling is divided into multiple parts, each carrying specific information such as destination address, service type, authentication parameters, and authorization data. This segmentation allows precise control and routing of access requests while enabling modular processing at different network elements, reducing the complexity burden on any single component.
Solution Approach 2:
The patent extends traditional address signaling by adding multiple dimensions of information to the address structure. Instead of a single address field, the system uses multi-part addressing that incorporates service identifiers, authentication vectors, and authorization parameters, transforming the address from a simple routing indicator to a comprehensive control mechanism.
3Adaptability or versatility
If access controlling schemas transform cellular communication signals, then micro commerce capabilities are enabled, but signal processing complexity increases
Solution Approach 1:
The access controller acts as an intermediary between the cellular network and digital resources, transforming access requests into appropriate signaling messages. This mediator function enables micro commerce capabilities by facilitating authentication and authorization for digital content access, application downloads, and in-app purchases without requiring direct complex processing at the core network.
Solution Approach 2:
The access controlling schema dynamically adapts signal transformation based on the specific access method and service type. The system can modify authentication requirements, authorization parameters, and signaling messages in real-time based on user profile, service level agreements, and network conditions, enabling flexible micro commerce transactions.
Data Source
AI summary
In some embodiments, an exemplary access controlling network architecture may include: a computing device, configured to: receive application program instruction to display an access controller interface element and a multi-part multi-functional access control, where the access controller interface element is: communicatively coupled to a cellular network hosted access controlling schema and operationally linked to at least one access-restricted digital resource; where the multi-part multi-functional access control sequence includes: a symbol, an access code, and a particular access control digital key; transmit an access request having: the multi-part multi-functional access control sequence and an identity linked to the computing device; receive, in response to the access request, a program instruction to unlock the at least one access-restricted digital resource for accessing via the computing device after the access code has been accepted by the cellular network hosted access controlling schema and the particular access control digital key matches an expected access control digital key.


