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Published on: June 9, 2023
The Multi-Objective Optimization of a Dual C-Type Gold Ribbon Interconnect Structure Considering Its Geometrical
Guangmi Li1, Song Xue1, Jinyang Mu2
1Guangzhou Institute of Technology, Xidian University, Guangzhou 510555, China.
This study optimizes dual C-type gold ribbon geometry for satellite antennas, minimizing signal loss from manufacturing and environmental factors. The findings guide improved antenna-microwave integration design.
Area of Science:
- Electrical Engineering
- Aerospace Engineering
- Materials Science
Background:
- Satellite systems require high integration and low cost, driving antenna and microwave component integration.
- Dual C-type gold ribbons are crucial electromagnetic bridges in integrated satellite systems.
- Geometric deformations in gold ribbons cause significant signal transmission energy loss.
Purpose of the Study:
- To develop a method for determining the design range of dual C-type gold ribbon geometrical parameters.
- To apply this method for performance prediction and parameter optimization of microstrip antennas.
- To provide theoretical guidance for optimizing integrated antenna and microwave component modules.
Main Methods:
- Mechanical response analysis of antennas under operating conditions and manufacturing disturbances.
- Identification and ranking of significant geometrical parameters affecting performance.
- Utilizing a chaos feedback adaptive whale optimization algorithm-back propagation neural network as a surrogate model.
- Employing a multi-objective red-billed blue magpie optimization algorithm for parameter optimization.
Main Results:
- Calculated geometry fluctuation ranges considering mechanical responses and manufacturing disturbances.
- Identified key geometrical parameters with significant impact on antenna performance.
- Established a relationship between geometrical parameters and antenna electromagnetic performance using a surrogate model.
- Optimized configuration parameters for the gold ribbon.
Conclusions:
- The proposed method effectively determines the design range for dual C-type gold ribbon geometry.
- Optimized geometry minimizes energy loss and enhances the electrical performance of satellite antennas.
- This research provides crucial theoretical guidance for the design and optimization of integrated antenna-microwave modules.
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