Wireless Router Push Paradigm Data Delivery
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Solution Overview
Problem
Current wireless systems rely on pull paradigms for data exchange between host services and mobile devices, leading to inefficiencies such as delayed message delivery, bandwidth issues, and increased energy consumption, as they require users to initiate data synchronization, which can result in missed emergency updates and complex, costly communication processes.
Innovation Solution
A wireless routing system that continuously pushes user-selected data items from a host system to mobile devices, enabling 'always on, always connected' functionality, with flexible data types and event triggers, and providing end-to-end security and firewall extension to mobile devices, using a single routing system capable of operating across various communication networks.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If a pull paradigm is used for data exchange between host services and mobile devices, then users can retrieve data when needed, but data delivery is delayed and users may miss emergency updates
Solution Approach 1:
The patent inverts the traditional pull paradigm by implementing a push paradigm where the host system proactively transmits data to mobile devices without waiting for user requests. This inversion enables real-time data delivery and ensures users receive emergency updates immediately, resolving the contradiction between delivery reliability and delivery time.
Solution Approach 2:
The patent implements preliminary action by pre-synchronizing data to mobile devices before users need it. The host system continuously pushes data updates to mobile devices in advance, so when users need information, it is already available locally, eliminating delays and ensuring critical updates are never missed.
2Loss of energy
If data is warehoused at the host system and synchronized in bulk when requested, then bandwidth consumption is reduced, but data delivery is delayed and system complexity increases
Solution Approach 1:
The patent implements periodic action by establishing regular data synchronization intervals between the host system and mobile devices. Data is pushed at predetermined periods rather than waiting for user requests, ensuring timely delivery while optimizing bandwidth usage through structured, periodic transmission patterns.
Solution Approach 2:
The patent maintains continuity of useful action by implementing continuous data push capabilities. The host system continuously transmits data updates to mobile devices as they become available, ensuring uninterrupted data flow and real-time information availability without excessive bandwidth consumption through efficient continuous synchronization.
3Loss of energy
If users manually initiate data synchronization, then bandwidth is conserved, but energy consumption increases and user responsiveness decreases
Solution Approach 1:
The patent implements self-service by enabling mobile devices to automatically receive and process data pushes from the host system without requiring user initiation. The device's data synchronization operates autonomously, reducing the energy burden on users while optimizing bandwidth consumption through intelligent automated synchronization protocols.
4Device complexity
If a single routing system is used to push data across diverse wireless networks, then system management is simplified, but network compatibility challenges arise
Solution Approach 1:
The patent implements universality by designing a single routing system capable of operating across multiple diverse wireless networks. The system incorporates multi-functional capabilities to adapt to different network protocols and standards, enabling simplified management while maintaining broad network compatibility through universal communication protocols.
Solution Approach 2:
The patent uses an intermediary approach by introducing a universal routing system that mediates between the host system and diverse wireless networks. This intermediary layer translates and adapts data transmissions to accommodate different network protocols, simplifying system management while ensuring compatibility across various network types.
Data Source
AI summary
A wireless router employing a technique to couple a plurality of host services or host systems and a plurality of wireless networks. A method to route data items between a plurality of mobile devices and a plurality of host systems through a common wireless router. A point-to-point communication connection is preferably established between a first host system and a common wireless router, a mobile network message at a mobile device is generated, the mobile network is transmitted via a wireless network to the common wireless router which in turn routes a data item component of the mobile network message to the appropriate host service.


