基于超级电容器储能电传动中PWM逆变器输入稳压精度的提高

Polyakov Vladimir, Plotnikov Iurii
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引用次数: 0

摘要

本文研究了采用变频调速方法的交流传动系统中带PWM逆变器的变频器直流环节的稳压问题。为了稳定直流环节的电压,采用了储能技术,采用基于超级电容器的储能装置,通过双向DC-DC变换器连接到直流环节。该工作采用了通过用储能装置的外部电流补偿PWM逆变器负载电流来稳定直流母线电压的概念。该储能装置配有单回路跟踪电流控制系统。目前的控制系统是基于组合控制方法。研究的目的是为了提高变频器直流环节稳压的精度。研究了直流链路电压对各种干扰因素的敏感性。对电流控制系统的误差系数进行了理论分析。在不考虑DC-DC变换器离散性的情况下进行了电驱动仿真。研究结果可为开发各种应用的超级电容器储能控制系统提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Accuracy Increasing of Voltage Stabilization on the Input of PWM Inverter in the Electric Drive with Energy Storage based on Supercapacitors
The paper deals with the problem of the voltage stabilization in the DC link of a frequency converter with an PWM inverter, which is part of AC drive with a frequency method of speed control. To stabilize the voltage in the DC link, energy storage technology is used, which is implemented with using an energy storage device based on supercapacitors, which is connected to the DC link by means of bi-directional DC-DC converter. The work uses the concept of stabilizing the DC bus voltage by compensating the PWM inverter load current with the external current of the energy storage device. The energy storage device is equipped with a single-loop tracking current control system. The current control system is based on the combined control method. The aim of the work is to improve the accuracy of voltage stabilization in the DC link of frequency converter. The sensitivity of the DC link voltage to various disturbing factors is investigated. The theoretical analysis of the error coefficient of the current control system is carried out. The simulation of the electric drive is carried out without and taking into account the discreteness of the DC-DC converter. The research results can be useful in the development of supercapacitor energy storage control systems for various applications.
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