用于可再生能源的超级电容器辅助混合DC-DC变换器

Thilanga Ariyarathna, N. Kularatna, D. A. Steyn-Rosse
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引用次数: 0

摘要

可再生能源(如太阳能、风能和海浪)的不稳定和不可靠的性质可能使它们在未来几年内无法作为工业应用的主要能源,尽管它们不会造成任何严重的环境问题。对于需要瞬时大电流的应用,在电池中临时储存能量并不是一个有效的解决方案。电池由于其有限的周期和日历寿命以及处理问题使其在许多可再生应用中不那么有吸引力。引入超级电容器作为短期储能装置是克服上述问题的可行方案。超级电容器(SC)辅助低差稳压器(SCALDO)是一种非常低频的DC-DC变换器技术,具有高端到端效率,其中负载接收高摆率的低噪声线性稳压器输出。在这个混合DC-DC转换器中,一个开关模式SC辅助输入级减少了SCALDO的总开关计数,这有助于在非常高的输入输出电压比下减少开关损耗。在输入回路中引入串联超级电容器,变压器提供隔离,SC作为电子减震器。系列SC也作为短期直流ups电源转换器。本文概述了这种新型混合功率变换器,详细讨论了控制策略。实验结果和仿真结果证明了该概念在技术上的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Supercapacitor Assisted Hybrid DC-DC Converter for Applications Powered by Renewable Energy Sources
The unstable and unreliable nature of renewable energy sources such as solar, wind and sea waves, could make them inoperable within next few years as a primary energy source in industry applications although they are not causing any critical environmental problems. Storing energy for temporary basis in batteries is not an effective solution for applications demanding instant high current. Batteries due to their limited cycle and calendar life as well as disposal issues make them less attractive in many renewable applications. Introducing supercapacitors as short term energy storage devices is a viable solution to overcome the above problems. Supercapacitor (SC) assisted low drop-out regulator (SCALDO) is a very low frequency DC-DC converter technique, with high end-to-end efficiency, where the load receives a high slew rate capable low noise output of a linear regulator. In this hybrid DC-DC converter, a switched-mode SC assisted input stage reduces the overall switch count of SCALDO and this helps to reduce switching losses at very high input to output voltage ratios. A series supercapacitor is introduced in the input loop with the transformer providing isolation and SC acts as an electronic shock absorber. Series SC is also acting as short term DC-UPS for the power converter. This paper provides an overview of this novel hybrid power converter, discusses control strategy in detail. Experimental results and simulation outcomes are presented to prove the technical feasibility of the concept.
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