Data Transmission Priority Identification System
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Solution Overview
Problem
Current data transmission methods do not allow users to prioritize certain data files over others during transfer from one storage area to another, leading to inefficient data transfer processes.
Innovation Solution
A method and apparatus that intelligently identify priority data objects based on attributes such as usage length, frequency of use, last time of use, storage path identifiers, and selection operation identifiers, allowing for prioritization and sequence adjustment during data transfer from one storage area to another.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If data transmission order is based on file names, then the transmission process is simple and automatic, but the user cannot prioritize certain data files over others
Solution Approach 1:
The system performs preliminary analysis of data objects before transmission by examining attributes such as usage length, frequency of use, last time of use, storage path identifiers, and selection operation identifiers. This preliminary action enables the system to determine transmission priorities in advance, allowing important files to be transmitted first without requiring manual user intervention during the actual transmission process.
2Productivity
If all data objects are transmitted in file name order, then the transmission process is straightforward, but important files may not be transmitted first
Solution Approach 1:
The system applies different transmission priorities to different data objects within the same transmission batch based on their individual attributes. Instead of treating all files uniformly, the system evaluates each file's usage length, frequency of use, last access time, storage path, and selection operations to assign specific priority levels, ensuring that important files receive preferential treatment while maintaining efficient overall transmission.
3Measurement precision
If the system analyzes multiple attributes to determine priority, then accurate priority determination is achieved, but the system complexity increases
Solution Approach 1:
The system employs a unified multi-attribute evaluation framework that handles various file characteristics (usage length, frequency of use, last time of use, storage path identifiers, selection operation identifiers) through a single integrated priority determination mechanism. This universal approach allows the system to accurately assess transmission priorities for diverse file types and scenarios without requiring separate complex processing paths for each attribute.
Data Source
AI summary
The present disclosure provides a method and apparatus for transmitting data, and an electronic device thereof. The method includes identifying a first data object in a first object set in response to transmitting the first object set from a first storage area to a second storage area; and transmitting the first data object to the second storage area to indicate a start of transmission of the first object set from the first storage area to the second storage area.

