Network Identity Service Integration for Resource Optimization
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Solution Overview
Problem
Network identity services and account-based service applications typically operate independently, leading to redundant resource consumption and system complexity, as they are not effectively integrated to perform coordinated functions while protecting sensitive data and minimizing network usage.
Innovation Solution
A system that enables interaction between network identity services and account-based service applications, utilizing processors and non-transitory storage media to exchange data, identify individuals through biometrics, and facilitate services like ridesharing and identity verification, while minimizing resource usage and ensuring data protection.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If network identity services and account-based service applications operate independently, then data security and service specialization are maintained, but resource consumption increases and system complexity grows
Solution Approach 1:
The patent merges network identity services with account-based service applications into an integrated system where identity verification and service delivery occur within a unified architecture, reducing redundant resource consumption while maintaining security through coordinated service interactions
Solution Approach 2:
The integrated system enables a single platform to perform multiple functions including identity verification, account management, service delivery, and data protection, eliminating the need for separate independent systems and reducing overall resource consumption
2Adaptability or versatility
If network identity services and account-based service applications operate independently, then service functionality is preserved, but system complexity and redundant components increase
Solution Approach 1:
The patent combines previously separate identity services and service applications into a single integrated system, reducing the number of independent components and simplifying system architecture while preserving all necessary service functionalities through unified service modules
3Productivity
If network identity services and account-based service applications are integrated, then resource consumption is reduced and operational efficiency improves, but data protection requirements become more complex
Solution Approach 1:
The patent segments the integrated system into distinct functional modules with defined interfaces, allowing efficient resource sharing while implementing targeted data protection measures at each module level, reducing overall protection complexity through structured organization
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
This integration allows both services to perform a wider range of tasks efficiently, reducing redundant components and resource consumption, while enhancing operational efficiency and protecting sensitive information.
Implementation Method 1
a biometric reader device, wherein the at least one processor identifies the person by receiving a digital representation of a biometric and comparing the digital representation of the biometric to stored biometric data
Data Source
AI summary
A hardware system enables computer network interaction between network identity services and account-based service applications. In some examples, the network identity service biometrically identifies people. The network identity services and/or account-based service applications interact to exchange data in order to monitor, track, initiate, and/or cooperatively and/or individually perform various functions while protecting data that should not be shared and minimizing communication network usage and hardware and software resources. This interaction enables both to accomplish more and different tasks than they could individually while improving operational efficiency of hardware and software components of both.


