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Design and testing of a separate-type lighting system using solar energy and cold-cathode fluorescent lamps

机译:使用太阳能和冷阴极荧光灯的独立照明系统的设计和测试

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This paper presents a solar-powered lighting system, using cold-cathode fluorescent-lamps (CCFLs), with its battery-charging circuit and lamp-ignition circuit being separated so that its solar panels can be installed at any distance deemed necessary away from the lighting site in order to receive the maximum solar energy available. This system adopts the maximum-power point tracking (MPPT) method to control the power output of the solar panels and uses the zero-voltage switching (ZVS) DC-DC converter, as the charging circuit, to increase the panels' power generation efficiency and the charging circuit's conversion efficiency. The electronic ballast circuit for the CCFL is constructed with a half-bridge inverter, a resonant inductor, and a Rosen-type piezoelectric transformer, which forms a piezoelectric resonant-type inverter: to simplify the circuitry and to improve the power conversion efficiency, the ballast circuit is designed to directly step up the battery voltage in igniting the lamp. We also establish the transmission-parameter model for the piezoelectric resonant-type inverter to provide the base for the electric-power circuit design. Our experimental results indicate that the proposed system possesses some advantages, such as greater energy efficiency, circuitry simplicity, and so on, and is suitable for night lighting in house yards, parks and advertising panels.
机译:本文介绍了一种使用冷阴极荧光灯(CCFL)的太阳能照明系统,其电池充电电路和灯点火电路是分开的,因此可以将其太阳能电池板安装在距离太阳能电池板必要的任何距离处。为了获得最大的太阳能可用量。该系统采用最大功率点跟踪(MPPT)方法来控制太阳能电池板的功率输出,并使用零电压开关(ZVS)DC-DC转换器作为充电电路,以提高太阳能电池板的发电效率以及充电电路的转换效率。 CCFL的电子镇流器电路由半桥逆变器,谐振电感器和Rosen型压电变压器构成,构成压电谐振型逆变器:为简化电路并提高功率转换效率,镇流器电路设计为在点亮灯时直接提高电池电压。我们还建立了压电谐振型逆变器的传输参数模型,为电力电路设计提供了基础。我们的实验结果表明,所提出的系统具有一些优势,例如更高的能效,电路简单性等,并且适用于房屋院子,公园和广告板中的夜间照明。

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