期刊论文详细信息
The Journal of Engineering
Improved control strategy of TFAPF in active distribution networks
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[1] Electric Power Research Institute, State Grid Shanxi Electric Power Company, Taiyuan, People's Republic of China;
关键词: dynamic response;    power supply quality;    power harmonic filters;    electric current control;    power distribution control;    phase control;    power control;    mathematical analysis;    PI control;    active distribution networks;    power electronic devices;    stationary coordinate system;    network side current;    power fluctuation;    fast dynamic response;    repetitive control composite controller;    current loop controller;    power quality deterioration;    improved TFAPF control strategy;    three-phase four-wire active power filter control strategy;    nonharmonic detection;    multimodel principle;    mathematical model;    DC bus voltage;    vector resonant control composite controller;    proportional integral control composite controller;   
DOI  :  10.1049/joe.2018.8796
来源: publisher
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【 摘 要 】

In order to solve the deterioration of power quality caused by power electronic devices in active distribution networks, it is necessary to improve the three-phase four-wire active power filters (TFAPF) control strategy. This study adopts the non-harmonic detection and proposes an improved control strategy of TFAPF based on the multi-model principle. Firstly, the mathematical model of TFAPF in the stationary coordinate system is established by replacing the network side current and the DC bus voltage directly as the state variables. Secondly, TFAPF in active distribution networks requires the power fluctuation and fast dynamic response, the proposed control strategy of TFAPF in the stationary coordinate system is applied, namely proportional integral, vector resonant and repetitive control composite controller as the current loop controller of TFAPF with a fast dynamic response, high accuracy and small amount of calculation, provide guarantee for the power quality in active distribution networks. Finally, the feasibility of the proposed control strategy is verified by simulation.

【 授权许可】

CC BY   

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