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Design approach for Supercapacitor Assisted LED lighting (SCALED) technique for DC-microgrids

机译:超级电容器辅助LED照明(SCALED)技术对DC微粒技术的设计方法

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Energy efficiency is a main requirement in power converters used in domestic electrical goods including lighting. Using DC at home and DC-microgrids are relatively new concepts proposed to overcome the problems with energy efficiency. DC-microgrids are local energy networks which consist of renewable energy sources and storage systems. In many modern white goods, typically advertised as inverter driven, there is an AC-DC converter in the power drive train starting from AC 230V, 50Hz. Most domestic white goods, including energy efficient lighting are internally DC-driven and based on multiple DC-DC converters. Overall efficiency of a domestic appliance is determined by the multiplication of the efficiencies in each conversion stage. If the first stage of AC-DC conversion is not used, by feeding it from a DC source such as solar energy, end-to-end efficiency (ETEE) will be increased. Energy engineers are now getting ready to use DC-microgrid techniques. In this project where LED lighting loads are to be fed by solar or other renewable energy DC sources, 12V LED lighting is an excellent starting point, since LED lamps operate from plus or minus DC sources of widely varying DC values. We are developing a new technique, Supercapacitor Assisted LED (SCALED) lighting system powered by DC bus fed directly from solar panels, in which a supercapacitor (SC) bank is to be used to buffer short-term energy supply interruptions. This project derives from the patented SCALDO technique.
机译:能效是在包括照明的国内电气商品中使用的电源转换器的主要要求。在家中使用DC和DC-MicroGrids是相对较新的概念,提出克服能源效率的问题。 DC-MicroGrids是由可再生能源和存储系统组成的本地能量网络。在许多现代白品商品中,通常广告为逆变器驱动,电源驱动系中有一个AC-DC转换器从AC 230V,50Hz开始。大多数家庭商品,包括节能照明,内部直流驱动并基于多个DC-DC转换器。国内设备的整体效率由每个转换阶段的效率的乘法决定。如果不使用AC-DC转换的第一阶段,通过从DC源馈送如太阳能,端到端效率(ETEE)将增加。能源工程师现在正准备使用DC-MicroGrid技术。在该项目中,通过太阳能或其他可再生能源直流源供给LED照明负载,12V LED照明是一个出色的起点,因为LED灯从大量变化的DC值的加号或减去直流源运行。我们正在开发一种新的技术,超级电容器辅助LED(缩放)照明系统由直接从太阳能电池板送入的直流总线,其中超级电容器(SC)银行用于缓冲短期能量供应中断。该项目源于专利的ScalDo技术。

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