Peer-to-Peer Mobile Data Replication via SMS Trigger
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Solution Overview
Problem
In mobile work environments, existing technologies face challenges in ensuring timely and efficient access to updated information among mobile users, leading to inefficiencies and increased organizational costs due to the reliance on multiple technologies and manual data exchange mechanisms.
Innovation Solution
The implementation of automatic peer-to-peer mobile-device based data replication systems, where a source mobile device triggers data replication through SMS requests and establishes direct communication channels to replicate data stores on target devices, allowing for real-time updates and shared access to current data.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If multiple technologies are employed to ensure information is received by all mobile users, then information delivery reliability is improved, but device complexity and organizational cost increase
Solution Approach 1:
The patent combines multiple communication technologies (SMS, direct IP communication channels, data replication protocols) into a unified peer-to-peer data replication system. This merging approach maintains information delivery reliability while reducing overall system complexity by creating an integrated solution rather than managing separate technology stacks.
Solution Approach 2:
The mobile device is designed to perform multiple functions within a single system architecture: receiving SMS triggers, establishing direct IP communication channels, replicating data stores, and maintaining synchronization. This multi-functionality improves reliability while avoiding the need for separate dedicated systems for each function.
2Ease of manufacture
If manual data exchange mechanisms are used between mobile users, then implementation simplicity is maintained, but information timeliness and productivity deteriorate
Solution Approach 1:
The system enables automatic peer-to-peer data replication where mobile devices autonomously trigger and execute data synchronization based on predefined events. This self-service mechanism eliminates manual data exchange operations while maintaining implementation simplicity, thereby significantly improving information access efficiency and user productivity.
Solution Approach 2:
The system pre-configures data replication rules, triggers, and communication protocols on mobile devices before actual data exchange occurs. This preliminary setup enables automatic, timely data synchronization without manual intervention during critical moments, balancing simplicity with high productivity.
3Loss of information
If data is replicated across multiple mobile devices in real-time, then information currency is improved, but network bandwidth and energy consumption increase
Solution Approach 1:
The system replicates only the necessary portions of data stores based on predefined events and user needs, rather than continuously syncing entire data sets. This partial action approach maintains information currency by updating only changed or relevant data, thereby reducing energy consumption and network bandwidth usage.
Solution Approach 2:
Data replication is triggered periodically or event-driven rather than continuously, allowing mobile devices to synchronize information at optimal intervals. This periodic action maintains up-to-date information across devices while minimizing unnecessary energy consumption and network resource utilization during idle periods.
Data Source
AI summary
This present disclosure allows files and data stores to be automatically replicated directly from one mobile device to other mobile devices within a mobile environment. The disclosed systems and methods enable a group of mobile device users to maintain a dynamic data store of current data for shared use and modification. Configurable software allows mobile users to select predefined events or triggers that will automatically cause a data store to be replicated from that user's mobile device to every other mobile device in a specified group.


