一个允许全面和结构化学习的基础电力电子实验室实验:多相电容负载全桥整流器

Oğuzhan Öztoprak, A. Hava
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引用次数: 1

摘要

本文提供了一个小型的、基础级的电容负载三相全桥二极管整流器的电力电子实验室实验。虽然实验过程简单,但实验为全面学习电力电子的重要方面提供了广泛的机会。与常规实验一样,验证了整流器的非线性电路行为和性能表征。并在单相整流器上论证了电源阻抗对电能质量的影响,以及滤波降谐波的类型和大小。此外,整流器采用三角形和Y型连接的三相连接方式,用于隔离三次谐波和非三次谐波。因此,观察了变换器产生的谐波,并提供了对它们的良好理解。结构化、分步实验法已在本科电力电子课程中应用多年,是一种有效的电力电子基础课教学方法。该实验装置在硬件和操作方面易于实现,总体成本较低,可在全球任何电力电子实验室中实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Basic Power Electronic Laboratory Experiment Allowing Comprehensive and Structured Learning: Multi-Phase Capacitive Loaded Full-Bridge Rectifier
This paper provides a compact and fundamental level power electronics laboratory experiment about capacitive loaded three single-phase full-bridge diode rectifiers. While the procedure of the experiment is simple, the experiment provides wide range of opportunities for comprehensive learning on the important aspects of power electronics. The nonlinear circuit behavior of the rectifier and performance characterization are demonstrated as the conventional experiments. Moreover, the influence of the power source impedance on the power quality, the type and size of filtering for harmonic reduction are demonstrated on the single-phase rectifier. Furthermore, the three-phase connection type of the rectifiers with the delta and Y connection are utilized for isolating the triplen and nontriplen harmonics. Thus, the converter generated harmonics are observed and a good comprehension of them is provided. The structured, step-by-step experiment has been applied in the undergraduate power electronics courses for several years and has been confirmed as an efficient method for teaching power electronics at fundamental level. The experimental setup is easy to implement in terms of hardware and operation and has overall low cost, such that it can be implemented in any power electronics laboratory around the world.
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