Trusted Network Generation for Jailbroken Device Data Transfer
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Solution Overview
Problem
Jailbroken electronic devices face issues with unsupported applications disrupting normal functioning and insecure data transmission, leading to potential data compromise and loss.
Innovation Solution
A system using a generative AI scanner identifies altered properties on a primary user device, generates a root break alert, and establishes a trusted network with a secondary user device via a smart contract for secure data transmission.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If jailbroken devices install unsupported applications to gain additional functionality, then device versatility is improved, but device reliability and security deteriorate
Solution Approach 1:
The patent introduces a trusted intermediary device that mediates between the jailbroken primary device and external networks. This intermediary validates applications and monitors system state, allowing the jailbroken device to maintain its versatility while the intermediary ensures reliability and security by filtering and controlling access to system resources.
Solution Approach 2:
The system segments the trusted computing environment into multiple components: the primary jailbroken device, one or more trusted intermediary devices, and a network of trusted applications. This segmentation isolates the untrusted jailbroken environment from critical system resources while allowing controlled interaction, thus maintaining versatility without compromising reliability.
2Speed
If jailbroken devices transmit data directly to networks, then communication speed is improved, but data security deteriorates
Solution Approach 1:
The trusted intermediary device acts as a secure gateway between the jailbroken device and external networks. Data transmissions are routed through this intermediary, which performs security validation and filtering. This maintains communication speed by using efficient proxy mechanisms while enhancing data security through layered validation and isolated processing of sensitive information.
3Measurement precision
If manual security verification is performed on jailbroken devices, then measurement precision is improved, but ease of operation deteriorates
Solution Approach 1:
The system implements automated self-service security verification where the trusted intermediary device automatically analyzes application code, validates digital signatures, and monitors system state changes without requiring manual user intervention. The device autonomously makes security decisions based on pre-configured policies and real-time analysis, maintaining high verification accuracy while preserving ease of operation.
Solution Approach 2:
The system incorporates continuous feedback loops where the trusted intermediary monitors device state, validates applications in real-time, and dynamically adjusts security parameters. This automated feedback mechanism provides precise security verification by continuously analyzing system state and responding to potential threats, while eliminating the need for manual verification steps that would complicate user operation.
Data Source
AI summary
Systems, computer program products, and methods are described herein for dynamically generating trusted networks for electronic devices. The present invention is configured to identify a data transmission attempt from a primary user device; analyze, by a generative artificial intelligent (AI) scanner and prior to allowing the data transmission attempt, the primary user device; determine, by the generative AI scanner, at least one altered property is present on the primary user device; generate, based on the determination at least one altered property is on the primary user device, a root break alert interface component comprising a program identifier of the at least one altered property; and transmit the root break alert interface component to the user device.


