Push Transmission Device Band Utilization via Delay Distribution
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Solution Overview
Problem
Current push-type information transmission methods fail to optimally distribute network traffic, leading to congestion due to the lack of a method to determine an optimal limit value for push messages per unit time, resulting in inefficient network band utilization and prolonged saturation states.
Innovation Solution
A push-type information transmission device and method that determines the number of transmission destination clients for each chronological period based on response delay distribution data and allowable band data, optimizing network band utilization by chronologically dispersing the timing of push-type information transmission.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Quantity of substance
If push messages are transmitted to a large number of mobile terminals simultaneously, then information delivery coverage is improved, but network congestion occurs due to access concentration to the server
Solution Approach 1:
The patent segments the transmission process by dividing the large number of push message recipients into multiple groups and transmitting messages to each group sequentially rather than simultaneously. This segmentation of the transmission target population resolves the contradiction by maintaining high delivery coverage while preventing network congestion through distributed timing of access requests to the server.
Solution Approach 2:
The patent implements periodic action by transmitting push messages to different groups at different time intervals. The transmission is organized in periods where each period targets a specific group, and the timing between periods is optimized to distribute server access load. This periodic transmission pattern enables comprehensive information delivery while avoiding concentration of network traffic at any single moment.
2Object-affected harmful factors
If the number of push messages per unit time is controlled to distribute response traffic, then network congestion is avoided, but optimal limit value cannot be determined without empirical trial and error
Solution Approach 1:
The patent applies feedback by using measured response delay distribution data from previous transmissions to dynamically determine the optimal number of transmission destination clients for subsequent messages. The system monitors actual network response characteristics and uses this feedback to automatically adjust transmission parameters, eliminating the need for empirical trial and error while maintaining optimal network load distribution.
Solution Approach 2:
The patent changes parameters by using response delay distribution data to dynamically adjust the number of transmission destination clients based on actual network conditions. Instead of using fixed empirical limits, the system modifies transmission parameters (number of recipients per message batch) according to measured network response characteristics, achieving optimal control without complex empirical tuning processes.
3Ease of operation
If push messages are transmitted without considering response delay distribution, then transmission simplicity is maintained, but network saturation state is prolonged due to inefficient band utilization
Solution Approach 1:
The patent applies preliminary action by measuring and analyzing response delay distribution characteristics before determining the optimal transmission strategy. The system performs preliminary measurements of network response behavior and uses this pre-acquired knowledge to optimize subsequent transmission timing and recipient selection, thereby preventing network saturation without requiring complex real-time adjustments during transmission.
Data Source
AI summary
A push-type information transmission device is provided with a determination unit that determines the number of clients at transmission destinations of push transmission information in each of a plurality of chronologically continuous periods on the basis of at least response delay distribution data which is a probability distribution indicating the ratio of responses to information to the time elapsed since transmission of the information, and allowable band data indicating the allowable amount of information transfer.


