Wireless Transmission Processing for Priority-Based Conflict Resolution
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Solution Overview
Problem
In wireless communication networks, the overlap of different service transmissions leads to conflicts due to varying priorities, where transmissions with higher priority cannot be delayed and those with lower priority are often compromised, resulting in transmission losses.
Innovation Solution
A method and apparatus that determine the sequence relationship between the starting positions of transmissions in the time domain, ensuring that transmissions with higher priority are completed normally while optimizing those with lower priority by adjusting the transmission process, such as canceling or completing transmissions based on preset time points.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If multiple services are transmitted simultaneously to meet different service requirements, then service transmission flexibility is improved, but transmission conflicts and losses increase due to time-domain overlap
Solution Approach 1:
The patent segments the transmission process by dividing transmissions into different priority levels (first transmission with lower priority, second transmission with higher priority) and handling them separately based on their starting positions relative to a reference time point. This segmentation allows the system to manage conflicting transmissions without interfering with each other, resolving the contradiction between transmission flexibility and reliability.
Solution Approach 2:
The patent applies preliminary action by determining the starting positions of transmissions relative to a reference time point before actual transmission occurs. Transmissions are classified and processed in advance based on their timing relationships, ensuring that higher-priority transmissions are protected while lower-priority transmissions are optimized, thereby maintaining both flexibility and reliability.
2Reliability
If transmissions with higher priority are guaranteed to be performed normally, then transmission reliability is improved, but transmission loss for lower priority transmissions increases
Solution Approach 1:
The patent applies partial action by transmitting the first transmission only up to a specific time point (ending position determined by the reference time point and first preset time) rather than completing the entire transmission. This partial transmission approach ensures higher-priority transmissions are protected while still delivering useful data from lower-priority transmissions, reducing energy loss.
Solution Approach 2:
The patent changes the transmission parameter (time duration) dynamically based on priority levels and timing relationships. The ending position of the first transmission is adjusted according to the reference time point and first preset time, allowing the system to optimize transmission duration for lower-priority services while guaranteeing higher-priority service integrity.
3Manufacturing precision
If the starting position of a transmission is determined relative to a reference time point, then transmission scheduling precision is improved, but system complexity increases
Solution Approach 1:
The patent introduces a reference time point as an intermediary element that simplifies the scheduling process. Instead of complex absolute timing calculations, the system uses the reference time point to determine relative starting positions and ending positions, reducing computational complexity while maintaining scheduling precision.
Solution Approach 2:
The patent creates an equipotential scheduling framework where all transmissions are evaluated relative to the same reference time point and using the same first preset time parameter. This unified approach simplifies the scheduling logic by providing a common baseline for comparison, reducing system complexity while achieving precise timing control.
Data Source
AI summary
Provided are a method for transmission processing and a computer-readable storage medium. The method includes determining for at least two transmissions that the starting position of a first transmission is earlier than a point G; and transmitting the first transmission from the starting position of the first transmission to the point G, or transmitting the first transmission from the starting position of the first transmission to the ending position of the first transmission. The point G is a time point of first preset time before the starting position of a second transmission.


