大功率输入整流级变速制冷系统

C. Canesin, F. Gonçalves, E. Leandro, J. Pinto
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引用次数: 3

摘要

本文在分析和实现一种适用于制冷系统的新型驱动系统的基础上,符合IEC标准的限制(谐波/闪烁/ emi电磁干扰限制),以获得高效率、高功率因数、降低输入电流中的谐波畸变和减少电磁干扰、具有优异温度控制性能的制冷样机系统(自动控制,精度和高动态响应)。建议用三相电机代替传统制冷系统中的单相电机。通过这种方式,可以应用适当的控制技术,使用闭环(反馈控制),这将允许精确调整所需的温度。提出的制冷样机使用0.5马力三相电机和开放式(皮带驱动)比泽尔IY型压缩机。输入整流级的主要特点包括减少输入电流纹波,减少输出电压纹波,使用低应力器件,EMI输入滤波器体积小,输入功率因数(PF)高,输入电流总谐波失真(THD)低,符合IEC61000-3-2标准。利用传统的电压频率控制(标量V/f控制)和简化的定子定向矢量控制,开发了输出三相逆变级的数字控制器,以验证所提出的数字控制器在冰箱原型上应用于连续温度控制的可行性和性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Variable speed refrigeration system with HPF input rectifier stage
This paper is based on the analysis and implementation of a new drive system applied to refrigeration systems, complying with the restrictions imposed by the IEC standards (Harmonic/Flicker/EMI-Electromagnetic Interference restrictions), in order to obtain high efficiency, high power factor, reduced harmonic distortion in the input current and reduced electromagnetic interference, with excellent performance in temperature control of a refrigeration prototype system (automatic control, precision and high dynamic response). The proposal is replace the single-phase motor by a three-phase motor, in the conventional refrigeration system. In this way, a proper control technique can be applied, using a closed-loop (feedback control), that will allow an accurate adjustment of the desirable temperature. The proposed refrigeration prototype uses a 0.5 Hp three-phase motor and an open (Belt-Drive) Bitzer IY type compressor. The input rectifier stagepsilas features include the reduction in the input current ripple, the reduction in the output voltage ripple, the use of low stress devices, low volume for the EMI input filter, high input power factor (PF), and low total harmonic distortion (THD) in the input current, in compliance with the IEC61000-3-2 standards. The digital controller for the output three-phase inverter stage has been developed using a conventional voltage-frequency control (scalar V/f control), and a simplified stator oriented Vector control, in order to verify the feasibility and performance of the proposed digital controls for continuous temperature control applied at the refrigerator prototype.
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