Confirming authenticity of a user to a third-party system
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Solution Overview
Problem
Existing authentication methods for online interactions are prone to errors and fraud due to incorrect user input or impersonation, leading to user frustration and increased fraudulent transactions.
Innovation Solution
A telecommunications network server authenticates users by providing a digital identifier to their device and verifying an electronic transaction code, confirming the user's authenticity before allowing transactions with third-party systems, thereby reducing the need for personal identification information input and minimizing fraudulent activities.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If traditional authentication methods requiring personal identification information input are used, then users can be verified for transactions, but users may enter information incorrectly or not have access to all requested information, leading to frustration and disengagement
Solution Approach 1:
The patent introduces a telecommunications network server as an intermediary that performs authentication between the user device and third-party systems. The server receives personal identification information from the user device, verifies it against stored user profiles, and issues authentication tokens to third-party systems without requiring users to manually input their own identification information at each transaction. This intermediary approach resolves the contradiction by centralizing the verification function, improving both authentication reliability and user convenience.
Solution Approach 2:
The patent implements preliminary authentication where users provide their personal identification information and receive a unique identifier from the telecommunications network server before actual transactions occur. This pre-authentication process stores user profiles and authentication tokens in advance, allowing subsequent transactions to proceed without repeated manual verification. The preliminary action eliminates the need for users to re-enter identification information, resolving the contradiction between reliable verification and ease of operation.
2Reliability
If online services request authenticating information from users, then user identity can be verified, but fraudulent transactions can still occur when impersonators use stolen or false personal information
Solution Approach 1:
The telecommunications network server acts as a secure intermediary that verifies user identity before allowing transactions with third-party systems. The server maintains a database of authenticated user profiles and issues authentication tokens that third-party systems must present to verify user identity. This intermediary verification layer prevents fraudulent transactions by ensuring that only authenticated users with valid tokens can initiate transactions, while the server itself controls the distribution of authentication information, making it difficult for impersonators to succeed.
Solution Approach 2:
The patent implements a feedback mechanism where the telecommunications network server continuously monitors authentication requests and transaction attempts. When a third-party system receives an authentication token, the server verifies the token's validity and the associated user profile before allowing the transaction. This feedback loop provides real-time verification and can detect fraudulent patterns, resolving the contradiction between reliable user verification and prevention of fraudulent transactions.
3Reliability
If users must provide personal identification information to third-party systems, then authentication can be performed, but users become frustrated and disengage from transactions
Solution Approach 1:
The patent performs the authentication action in advance by having users provide their personal identification information and receive a unique identifier from the telecommunications network server before transactions occur. The server stores this information and issues authentication tokens that can be presented to third-party systems. This preliminary authentication eliminates the need for users to manually input their identification information at the point of transaction, thereby maintaining authentication capability while significantly improving transaction completion rates by removing the friction of repeated data entry.
Solution Approach 2:
The telecommunications network server serves as an intermediary that handles all authentication-related data processing between users and third-party systems. Users interact with the server to provide identification information and receive authentication tokens, while third-party systems interact with the server to verify tokens. This intermediary architecture removes the burden of manual identification information entry from the transaction flow, resolving the contradiction between maintaining authentication capability and improving transaction completion rates.
Data Source
AI summary
A telecommunications network server system provides a digital identifier to a user device. The digital identifier may include identification data corresponding to a user of the user device. In addition, the telecommunications network server system receives, from one or more third-party systems, requests to authenticate the user for an electronic transaction with the respective third-party system. The telecommunications network server system provides a unique electronic transaction code to each third-party system. Responsive to receiving from the user device one of the unique electronic transaction codes, the telecommunications network server system provides, to the respective third-party system, authentication of the user.


