基于高频变压器集成三端口转换器的独立家庭能源系统

Amal C Sunny;Dipankar Debnath;Kashem M. Muttaqi;Danny Sutanto
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引用次数: 0

摘要

太阳能储能系统是缺乏传统电网基础设施的农村地区很有前途的能源解决方案。这种系统的理想特征是更低的设备计数,用于太阳能和电池的连续电流端口,更好的功率转换效率,电压提升,最大功率点跟踪,电池的充电控制,电压调节和隔离。现有的方案只具备其中的一些特点。本文通过提出一种太阳能光伏(PV)和电池的两级独立系统来解决这一问题。本文的主要贡献是一个两级系统,该系统由一个新型高频变压器集成三端口dc-dc变换器(TPC)作为第一级组成,其次是一个逆变器来提供交流负载。利用电路图和波形分析了TPC在不同切换状态下的工作情况,并设计了一种控制方案,使系统在不同模式下工作,实现无缝换模。此外,还提供了整个系统各部件的选择指南。通过对400w样机的详细分析和实验研究,验证了该方案的可行性。结果表明,所提出的系统优于现有的方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A High-Frequency Transformer Integrated Three-Port Converter-Based Stand-Alone Home Energy System
Solar-powered systems with energy storage are promising energy solutions for rural areas lacking conventional grid infrastructure. The desirable features of such a system are lower device counts, continuous current ports for solar and battery, better power conversion efficiency, voltage boosting, maximum power point tracking, charge control of the battery, voltage regulation, and isolation. The existing schemes possess only some of these features. This article addresses this concern by proposing a two-stage stand-alone system with solar photovoltaic (PV) and battery. The main contribution of this article is a two-stage system consisting of a novel high-frequency transformer integrated three-port dc–dc converter (TPC) as the first stage, followed by an inverter to supply the ac loads. The operation of the proposed TPC is analyzed under different switching states with circuit diagrams and waveforms, and a control scheme is devised for the system to operate under different modes for seamless mode shifts. Further, selection guidelines for various components of the complete system are provided. The proposed stand-alone solution is validated through detailed analysis and experimental study on a 400 W prototype. The results demonstrate that the proposed system is superior to the currently available schemes.
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