Data Transfer Control for WiFi and Non-WiFi Networks
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Solution Overview
Problem
Existing data transfer methods require users to manually restart data transfer after interruptions and are inefficient across different network types, leading to increased data traffic and costs, affecting user experience.
Innovation Solution
A method and system that detect the current network connection type between a terminal and a server, enabling data transfer on WiFi connections and suspending it on non-WiFi connections, with user prompts for non-WiFi transfers, and automatic resumption on WiFi reconnection.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If data transfer is always performed regardless of network connection type, then data transfer continuity is maintained, but data traffic consumption and cost increase significantly
Solution Approach 1:
The patent applies dynamics by making the data transfer system adaptable to different network conditions. The system dynamically adjusts its behavior based on real-time detection of network connection types (WiFi vs. non-WiFi), automatically enabling or suspending transfers without user intervention. This dynamic adaptation resolves the contradiction by allowing continuous transfer capability while conserving data traffic through context-aware decision-making.
Solution Approach 2:
The patent implements feedback mechanisms through network state detection modules that continuously monitor connection types. This feedback loop provides real-time information about network conditions to the transfer control system, enabling it to make informed decisions about whether to perform data transfers. The feedback system resolves the contradiction by using network state information to optimize both transfer continuity and data traffic consumption.
2Ease of operation
If data transfer is manually restarted after interruption, then transfer control flexibility is maintained, but user operation complexity increases
Solution Approach 1:
The patent applies self-service by enabling the data transfer system to automatically detect network conditions and make transfer decisions without requiring user intervention. The system monitors network states, determines appropriate transfer actions, and executes transfers autonomously based on detected WiFi availability. This self-service capability resolves the contradiction by eliminating manual restart operations while maintaining transfer control flexibility through automated decision-making.
Solution Approach 2:
The patent implements preliminary action by proactively detecting network connection types before initiating data transfers. The system continuously monitors network states in advance and prepares transfer operations accordingly, ensuring transfers are automatically restarted when WiFi becomes available without requiring user action. This preliminary monitoring resolves the contradiction by anticipating network conditions and eliminating user intervention time.
3Adaptability or versatility
If data transfer is performed on non-WiFi connections, then network connectivity utilization is maximized, but data cost and traffic increase
Solution Approach 1:
The patent applies local quality by differentiating transfer behavior based on specific network connection types. The system detects whether the current connection is WiFi or non-WiFi and applies different transfer policies locally: enabling transfers on WiFi connections (unlimited data) while suspending them on non-WiFi connections (paid data). This localized approach resolves the contradiction by maximizing network utilization on appropriate connections while controlling data traffic volume through connection-type-specific decisions.
Data Source
AI summary
A data transfer method is provided for a terminal coupled to a server by one or more networks. The method includes detecting a connection type of a current network between the terminal and the server and performing data transfer between the terminal and the server when it is detected that the connection type of the current network is a wireless fidelity (WiFi) connection. Further, the method includes suspending data transfer between the terminal and the server when it is detected that the connection type of the current network is a non-WiFi connection.


