Private Network Interconnect Protocol Exchange for Application Sharing
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Solution Overview
Problem
Private networks often face incompatibility issues due to differences in network parameters, security protocols, and configurations, which hinder secure and reliable communication between them.
Innovation Solution
The technology provides a system for private network interconnect protocol exchange (PN-IPX) that adjusts information packets to be compatible across different private networks, enabling secure and reliable communication by converting packets and routing them based on specific requirements and protocols, and also facilitates roaming and application sharing through smart contracts.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If private networks use different network parameters and security protocols to meet their specific requirements, then security and reliability are improved, but compatibility and ease of communication between networks deteriorate
Solution Approach 1:
The patent introduces a message converter as an intermediary component that translates messages between different network protocols and parameters. The converter receives messages from a first private network with its specific protocol requirements, converts them to a compatible format for the second private network, and forwards them accordingly. This mediator approach allows each network to maintain its own security and reliability settings while enabling seamless communication between networks with different configurations.
2Reliability
If private networks are configured with strict security requirements and authenticated access, then data privacy is improved, but ease of operation and resource sharing deteriorate
Solution Approach 1:
The message converter acts as a secure intermediary that handles authentication and message translation between networks with different security requirements. It receives authenticated messages from one network, verifies them against the appropriate security policies, converts them to the target network's format, and forwards them only if security requirements are met. This enables resource sharing between networks while maintaining each network's strict security and data privacy requirements.
3Adaptability or versatility
If private networks use customized protocols and configurations to support specific enterprise services, then functionality is improved, but device complexity and difficulty of integration increase
Solution Approach 1:
The message converter simplifies integration by providing a standardized interface between networks with customized protocols. Instead of requiring direct complex integration between networks with different configurations, the converter handles protocol translation, parameter mapping, and format conversion centrally. This reduces integration complexity while preserving the full functionality and customized configurations of each enterprise's private network.
Solution Approach 2:
The system dynamically changes message parameters including protocol type, data format, encoding, and security settings based on the source and destination networks. The converter identifies the required parameter transformations and applies them automatically, allowing networks to maintain their customized configurations while enabling seamless interoperability through automatic parameter adaptation.
Data Source
AI summary
This disclosure relates to wireless communication. In some aspects, a method includes receiving, at one or more computing devices from a first private network, information representing at least one application to be accessed by a user device associated with a second private network, the information representing the at least one application being configured in accordance with network parameters of the first private network; transmitting the information representing the at least one application to the user device in the form of information packets configured in accordance with network parameters of the second private network; and executing a smart contract representing application sharing agreements between the first private network and the second private network, wherein executing the smart contract includes recording a transaction in accordance with the application sharing agreements, the transaction representing the sharing of the at least one application.


