Network Node Overshooting Cell Detection and Dynamic Coverage Adjustment
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Solution Overview
Problem
Existing communication network technologies fail to accurately detect and manage overshooting cells, leading to inefficient adjustment of coverage ranges, missed detection, false detection, and resulting call drops and reduced system throughput.
Innovation Solution
A method performed by a network node that detects overshooting cells by acquiring real-time transmission environment information, determines a dynamic adjustment step based on the cell's coverage situation, and adjusts the coverage range accordingly, while also constructing a cell group to adjust the coverage ranges of related cells.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If a pre-set uniform fixed step is used to adjust the coverage range of all overshooting cells, then the adjustment process is simple and uniform, but it fails to meet the differentiated needs of different scenarios and cannot accurately address various overshooting conditions
Solution Approach 1:
The patent implements dynamic adjustment of coverage range by calculating different adjustment steps based on real-time transmission environment information. Instead of using a fixed uniform step for all cells, the system dynamically determines the adjustment step for each overshooting cell based on its specific coverage situation, user distribution, and transmission characteristics, thereby resolving the contradiction between operational simplicity and scenario adaptability
Solution Approach 2:
The patent applies local quality by tailoring the adjustment step to each specific overshooting cell based on its local characteristics. The system calculates cell-specific adjustment steps considering factors such as user location distribution, timing advance distribution, and transmission environment, ensuring that each cell receives customized adjustment rather than uniform treatment, thus meeting the differentiated needs of different scenarios
2Measurement precision
If real-time transmission environment information is acquired and dynamic adjustment steps are determined for each overshooting cell, then the accuracy of overshooting cell detection and the suitability of coverage adjustment are improved, but the system complexity and processing requirements increase
Solution Approach 1:
The system performs self-service by automatically detecting overshooting cells and determining appropriate adjustment steps based on real-time transmission environment information. The network node autonomously acquires cell-related data and user-related data, predicts transmission environment information, and calculates adjustment steps without requiring external manual intervention, thereby achieving high detection accuracy while managing system complexity through automation
Solution Approach 2:
The patent implements feedback mechanisms by continuously acquiring real-time transmission environment information, comparing actual coverage with planned coverage, and adjusting coverage ranges based on the detected overshooting conditions. This closed-loop feedback system enables accurate detection and adaptive adjustment while managing complexity through automated feedback processing
Data Source
AI summary
Embodiments of the present disclosure provide a network node and a method performed by the network node and a storage medium, relating to a field of artificial intelligence. A method performed by a network node may comprise: detecting an overshooting cell; determining an adjustment step corresponding to the overshooting cell based on a coverage situation of the overshooting cell; and adjusting a coverage range of the overshooting cell based on the determined adjustment step. The method performed by the network node may be performed using an artificial intelligence model.


