基于非理想升压变换器的高效LED驱动设计

K. Sundari, K. Renganathan, R. Azhagumurugan, R. Kannan, A. Jeyadharshini, P. Mahalakshmi
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引用次数: 1

摘要

设计和改进高效的照明系统是确保可持续发展目标1-7可负担和清洁能源的紧迫优先事项。太阳能已经成为首选能源,因为它是净零碳的清洁能源,并且具有令人难以置信的潜在能源,可以使用各种易于获取的设备用于住宅和商业应用,具有低麻烦和零运营成本的额外好处。尽管太阳能在世界各地都很丰富,但跟踪其最佳运行光伏系统的功率是实现更高转换的关键组成部分。本文采用基于增量电导(IC)的MPPT方法。在这项工作中,点亮发光二极管(LED)的能量来自一个40瓦,12伏的太阳能电池板。该电压通过实现DC/DC升压转换器放大。从MPPT获得参考电压后,从接收光检测传感器输入的亮度控制电路获得电流的设定点。这里考虑的DC/DC升压转换器使用小信号建模技术,通过考虑电感和电容器的电阻(ESR)和二极管的存在产生的电压变化产生的非理想性来建模。分析了DC/DC Boost变换器右半面零带来的挑战,提出了比例加积分控制器来缓解相关的控制约束。利用MATLAB仿真研究,从观测值计算光度参数,以评价LED驱动器的主导地位。通过功率计算验证了该变换器的有效性。将IMC方法与Roberto方法进行比较,证明Roberto方法是有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of an Efficient LED Driver using Non-Ideal Boost Converter for Lighting Applications
Design and enhancement of an efficient lighting system is the pressing priority for ensuring Sustainable Development Goa1-7 Affordable and clean energy. Solar energy has been preferred as a source since it is clean energy source with net - zero carbon and has incredible potential energy which can be captured using a diverse range of easily accessible equipment for residential and commercial applications, with the added benefit of low hassle and zero operational cost. Despite the fact that solar energy is abundant throughout the world, the tracking of power towards its optimal operation PV systems is a critical component of achieving higher conversion. The MPPT method based on incremental conductance (IC) is used here. In this work, energy to light up an Light Emitting Diode (LED) is obtained from a 40 Watts, 12 Volts Solar Panel. This voltage is amplified by implementing a DC/DC Boost converter. After obtaining a reference voltage from the MPPT, the set point for the current is reaped from a brightness control circuit which receives input from a light detecting sensor. The DC/DC Boost Converter considered here is modelled using small signal modelling technique by accounting for non-idealities produced by inductors’ and capacitors’ electro-resistance (ESR) and voltage variations created by the presence of a diode. The challenges brought on by the DC/DC Boost converter’s right half plane zero are construeed, and a proportional plus integral controller is suggested to alleviate the associated control constraints. Using MATLAB simulation studies, the photometric parameters were computed from the observed values to appraise the dominance of the LED driver. Power calculations are performed to prove the proposed converter’s effectiveness. Comparison among IMC approach and Roberto method is done and it is inferred that Roberto method is proven to be effective.
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