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动态演化博弈下电力线通信信道路径带宽自适应分配算法

曲正

电子器件2025,Vol.48Issue(1):50-54,5.
电子器件2025,Vol.48Issue(1):50-54,5.DOI:10.3969/j.issn.1005-9490.2025.01.009

动态演化博弈下电力线通信信道路径带宽自适应分配算法

Adaptive Allocation Algorithm for Path Bandwidth of Power Line Communication Channels under Dynamic Evolutionary Game

曲正1

作者信息

  • 1. 长春工业大学机电工程学院,吉林 长春 130012||中铁建大桥工程局集团电气化工程有限公司,天津 300232
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摘要

Abstract

In the power line communication network,the throughput of the channel is in dynamic change,and the bandwidth and data of the channel are in a game state,evolving constantly.In order to ensure the communication effect of power line communication network,the characteristics of this dynamic game are combined and an adaptive path bandwidth allocation algorithm is designed for power line communication channels under the support of the designed dynamic evolution game model.The goal of path bandwidth allocation of pow-er line communication channel is set,the channel data bandwidth conflict state in the path of power line communication channel is ana-lyzed,and a dynamic evolutionary game model of path bandwidth allocation of power line communication channel is built.Based on the dynamic evolutionary game model,the FOT-FOA algorithm is used to realize the adaptive allocation of path bandwidth of power line communication channel,and the design of the entire method is completed.The experimental results show that after the application of the proposed algorithm,the evaluation value of the node communication quality of the power line communication network is improved to more than 0.8,and the path bandwidth of the power line communication channel can be adaptively allocated.The effective aggregate throughput of the power line communication network is higher than 20 kbps,which has certain application value.

关键词

动态演化博弈/电力线/通信信道/路径带宽/自适应/分配算法

Key words

dynamic evolutionary game/power line/communication channel/path bandwidth/self-adaptation/allocation algorithm

分类

信息技术与安全科学

引用本文复制引用

曲正..动态演化博弈下电力线通信信道路径带宽自适应分配算法[J].电子器件,2025,48(1):50-54,5.

基金项目

国家自然科学基金项目(658271223) (658271223)

电子器件

1005-9490

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