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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Integrated-Power-Control-Strategy-Based Electrolytic Capacitor-Less Back-to-Back Converter for Variable Frequency Speed Control System
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Integrated-Power-Control-Strategy-Based Electrolytic Capacitor-Less Back-to-Back Converter for Variable Frequency Speed Control System

机译:基于集成功率控制策略的电解电容器 - 用于可变频率控制系统的较少的背对背转换器

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摘要

This article presents an integrated power control strategy (IPCS) for a variable frequency speed regulation system, which consists of a back-to-back converter and a small film dc-link capacitor. Due to the lack of large-capacity energy storage components in the dc bus, there is a strong power coupling between the rectifier and the inverter. The dynamic response is limited and dc-link voltage oscillates because the traditional method controls rectification and inversion separately. The IPCS is proposed to achieve dynamic balance of the system power through synchronous control of the rectifier and inverter. High conversion efficiency guarantees the power balance of the rectifier and inverter meanwhile reduces the dc bus voltage ripple. To further reduce the dc-link voltage ripple and maintain the stability of the dc-link voltage under step changes of load, a virtual inertia control method is proposed, which consists of a virtual resistance control block and a virtual capacitor control block. As a result, the dc-link voltage ripple and the total harmonic distortion of the dc-link current can be improved. Simulations and experimental results are given to provide further validation of the proposed IPCS under different operating scenarios.
机译:本文介绍了一种可变频率调节系统的集成功率控制策略(IPC),其包括背对背转换器和小胶片直流链路电容器。由于直流总线中缺少大容量的储能组件,整流器和逆变器之间存在强大的电源耦合。动态响应是有限的,并且直流链路电压振荡,因为传统方法单独控制整流和反转。建议IPCS通过整流器和逆变器的同步控制实现系统功率的动态平衡。高转换效率可确保整流器和逆变器的功率平衡同时降低直流母线电压纹波。为了进一步降低DC-Link电压纹波并在阶梯改变负载下保持DC-Link电压的稳定性,提出了一种虚拟惯性控制方法,由虚拟电阻控制块和虚拟电容器控制块组成。结果,可以提高DC-Link电压纹波和DC连杆电流的总谐波失真。给出了模拟和实验结果,以便在不同的操作场景下进一步验证拟议的IPC。

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