Communication Node Model Libraries for Multi-Generation Digital Twins
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Solution Overview
Problem
Existing communication nodes are limited in versatility, as they can only construct digital twins for specific communication systems or generations, lacking flexibility in application.
Innovation Solution
A construction method that acquires models from a model library generated based on target data of the communication system, allowing the construction of digital twins for multiple communication systems, including 4G, 5G, and 6G, by using a first communication node and a digital twin control platform to manage and deliver these models.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If a communication node is dedicated to constructing a digital twin of a certain communication system or generation, then the construction accuracy and reliability are improved, but the versatility and adaptability of the communication node deteriorates
Solution Approach 1:
The communication node is designed with a model library that stores digital twin models for multiple communication systems (4G, 5G, 6G) and network elements. The node can selectively acquire and construct digital twins for different communication systems based on demand, transforming from a dedicated single-function node to a universal multi-functional platform that serves various communication generations and network element types.
Solution Approach 2:
The digital twin construction capability is segmented into modular components: a model library containing separate models for different communication systems and network elements, an acquisition module that selects specific models, and a construction module that builds the digital twin. This segmentation allows the node to handle multiple communication systems independently while maintaining construction accuracy for each specific system.
2Adaptability or versatility
If a communication node is designed with universal capability to construct digital twins for multiple communication systems, then the versatility is improved, but the device complexity increases
Solution Approach 1:
The complex universal capability is segmented into manageable modules: a centralized model library storing standardized models for different communication systems, an acquisition module that filters and selects appropriate models, and a construction module that executes the building process. This modular architecture reduces overall system complexity by organizing functionality into independent, reusable components.
Solution Approach 2:
Instead of implementing complete digital twin construction capabilities for every communication system from scratch, the node uses pre-generated and stored models as templates. The acquisition module retrieves relevant models from the library, and the construction module adapts them to specific needs. This copying approach significantly reduces device complexity compared to building all capabilities internally.
3Productivity
If pre-generated models are stored in a model library for acquiring and constructing digital twins, then the construction efficiency is improved, but the storage requirements and system complexity increase
Solution Approach 1:
Digital twin models for various communication systems and network elements are pre-generated and stored in the model library before actual construction needs arise. When a digital twin is required, the acquisition module quickly retrieves the appropriate pre-prepared model from the library, eliminating the need for time-consuming real-time model generation and significantly improving construction efficiency.
Solution Approach 2:
The system uses standardized pre-generated models as templates that can be rapidly copied and adapted for different communication systems. This approach improves efficiency by reusing validated model structures while keeping system complexity manageable through standardized model formats and acquisition/construction modules that handle model retrieval and adaptation automatically.
Data Source
AI summary
Provided are a construction method, a first communication node, a storage medium and a construction system. The method includes: acquiring, from a model library, a model required for constructing a digital twin of a communication system, where the model is generated based on target data of the communication system, and models for constructing multiple communication systems are stored in the model library; and constructing the digital twin based on the model.


