可编程电子交流负载:硬件拓扑综述

León Felipe Serna-Montoya, J. Cano-Quintero, N. Muñoz-Galeano, J. López-Lezama
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引用次数: 3

摘要

可编程电子交流负载(PELs)是一种新型的电力电子器件,被研究人员广泛用于模拟各种负载特性,如电阻性、感性、容性和非线性负载。PELs目前在微电网研究、隔离或混合太阳能发电厂以及电力电子设备测试等领域引起了极大的兴趣。本文介绍了以硬件拓扑为重点的PELs。介绍和讨论了不同的硬件配置,并解释了它们的功能。关于PELs设计的关键问题之一是消除负载消耗的过多有功功率。这可以通过通过DC-DC转换器将无源元件中的功率耗散或将其重新注入接收交流电网来实现。本文对这两种选择都进行了解释和详细说明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Programmable Electronic AC Loads: a Review on Hardware Topologies
Programmable electronic AC loads (PELs) are a new type of power electronic devices widely used by researches to emulate different load features, such as resistive, inductive, capacitive and non-linear loads. PELs are currently of great interest in the field of microgrid research, isolated or hybrid solar plants and power electronics device testing. This paper presents a review of PELs focusing on hardware topologies. Different hardware configurations are presented and discussed, explaining their functionality. One of the key issues regarding PELs design is the elimination of excessive active power drawn by the load. This can be performed by dissipating power in passive elements through DC-DC converters or re-injecting it into a receptive AC grid. Both options are explained and detailed in the paper.
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