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Electrical Circuit Modelling of Double Layer Capacitors for Power Electronics and Energy Storage Applications: A Review

机译:电力电子和能量存储应用双层电容器电路建模:综述

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摘要

There has been increasing interests in the use of double layer capacitors (DLCs)—most commonly referred to as supercapacitors (SCs), ultra-capacitors (UCs), or hybrid capacitors (HCs)—in the field of power electronics. This increased interest in the hybridization of energy storages for automotive applications over the past few years is because of their advantage of high power density over traditional battery technologies. To facilitate accurate design and simulation of these systems, there is a need to make use of accurate and well validated models. Several models have been postulated in literature, however, these models have various limitations and strengths, ranging from the ease of use down to the complexity of characterization and parameter identification. The aim of this paper is to review and compare these models, specifically focusing on the models that predict the electrical characteristics of DLCs. The uniqueness of this review is that it focusses on the electrical circuit models of DLCs, highlighting the strengths and weaknesses of the different available models and the various areas for improvement.
机译:在电力电子设备领域,使用双层电容器(DLC) - 以上通常称为超级电容器(SCS),超电容器(UC)或混合电容器(HCS) - 在电力电子领域中,越来越兴趣。这种增加在过去几年中对汽车应用的能量存储杂交的兴趣是因为它们在传统电池技术上具有高功率密度的优势。为了便于准确的设计和仿真这些系统,需要使用准确且良好的验证型号。几种模型已在文献中发布,然而,这些模型具有各种局限性和优势,从易用性降至表征和参数识别的复杂性。本文的目的是审查和比较这些模型,专注于预测DLC的电气特性的模型。本次审查的独特性是它侧重于DLC的电路模型,突出了不同可用模型的优点和弱点和各种领域的改进。

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