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Design and Development of a DC Light-Bulb Using High-Power LEDs

机译:使用大功率LED的直流电灯泡的设计与开发

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Electricity need is continuously increasing along with the increase in human population. The fulfillment of this need must consider the depletion of fossil energy sources as well as the environment protection. The development of renewable energy sources offers a promising solution. Concern on energy saving brings to an idea for reconsidering the use of alternating- current system of electricity. One technology being recently developed is a DC-home system by utilizing renewable energy sources. However, they may not generate enough energy for the house because the renewable resources are not always available at all times. Consequently, it is desirable to develop new home electrical devices that can work optimally using limited power. An important type of electrical load in a house being potential to adapt to the DC-home system is the light bulb. In this study, the use of High-Power LED (HPL) is explored to produce optimal illumination with low power consumption. An HPL requires a driver to activate and a heatsink to dissipate the generated heat. This study uses and LT3590 as the LED driver in conjunction with Arduino Nano as its microcontroller. The energy usage of the HPL is minimized by considering the amount of light entering the room with the help of a Light Dependent Resistor (LDR) sensor. The experiment results show that using a 3-watt light bulb the efficiency greater than 80% with luminous efficacy of 30 – 90 lm/W has been obtained. It has also been proven that operating the LED light by considering the amount of entering light into the room can provide the desired level of illumination with less power.
机译:电力需求随着人口的增长而不断增加。要满足这一需求,必须考虑化石能源的枯竭以及环境保护。可再生能源的发展提供了有希望的解决方案。对节能的关注带来了重新考虑使用交流电系统的想法。最近开发的一种技术是利用可再生能源的直流家庭系统。但是,它们可能无法为房屋产生足够的能量,因为可再生资源并不总是始终可用。因此,期望开发可以在有限的功率下最佳地工作的新的家用电气设备。灯泡中最有可能适应直流家庭系统的一种重要的电力负载类型。在这项研究中,探索了使用大功率LED(HPL)来产生具有低功耗的最佳照明的方法。 HPL需要驱动程序来激活,并且需要散热器来散发所产生的热量。这项研究使用LT3590作为LED驱动器,并将Arduino Nano作为其微控制器。通过使用光敏电阻(LDR)传感器来考虑进入房间的光量,可以最大程度地减少HPL的能耗。实验结果表明,使用3瓦的灯泡可获得大于80%的效率,发光效率为30 – 90 lm / W。还已经证明,通过考虑进入房间的光的数量来操作LED灯可以以较少的功率提供所需的照明水平。

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