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首页> 外文期刊>Indian Journal of Science and Technology >Design of Auxiliary Resonant Boost Converter for Flywheel based Photovoltaic Fed Microgrid
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Design of Auxiliary Resonant Boost Converter for Flywheel based Photovoltaic Fed Microgrid

机译:飞轮光伏馈电微电网辅助谐振升压变换器的设计

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Background/Objectives: To have a sustainable and low carbon living, efficient use of renewable energy is necessary hence, a power converter with less switching loss is proposed for the improvement of efficiency of proposed system. Methods/Statistical Analysis: In this work a dc boost converter is considered using an auxiliary resonant circuit for implementation of soft switching technology to reduce switching loss in the converter. The proposed dc resonant boost converter is designed for a required dc output based on the gate duty cycle. The soft switching is made possible by suitably designing the values of the inductor and capacitor of the dc resonant circuit. This circuit is simulated with MATLAB software. Findings: The resonant dc boost converter was simulated using MATLAB software with hard switching, the results of the simulation is discussed with waveforms and numerical values. The soft switched converter was able to provide an improved output voltage of 2Volts, current of 0.4 A, compared to the conventionally designed converter. Suitable design of the resonant components namely the inductor and capacitor, the efficiency of the soft-switched resonant boost converter improved by 2% compared to hard switched converter. Both the hard switching and soft-switched converters were simulated in open loop. It is evident from the output voltage and current waveforms, the settling time taken by the soft-switched converter is more compared to hard switched converter, but the improvement in voltage profile, current profile and efficiency overcomes the drawback of increased settling time. The resonant soft-switched converter when compared with the other converters reported provides an improved performance hence very much suitable for solar photovoltaic application. Applications/Improvements: The performance of the soft-switched converter can be improved further through closed loop control with simple controllers or using fuzzy logic controllers. This converter can also be used for other sources in any distributed generation.
机译:背景/目的:为了具有可持续的低碳生活,必须有效利用可再生能源,因此,提出了一种开关损耗较小的功率转换器,以提高所提出系统的效率。方法/统计分析:在这项工作中,考虑使用辅助谐振电路的直流升压转换器来实现软开关技术,以减少转换器中的开关损耗。拟议的直流谐振升压转换器基于栅极占空比设计为所需的直流输出。通过适当设计直流谐振电路的电感器和电容器的值,可以进行软开关。该电路使用MATLAB软件进行仿真。结果:使用具有硬开关功能的MATLAB软件对谐振直流升压转换器进行了仿真,并通过波形和数值讨论了仿真结果。与传统设计的转换器相比,软开关转换器能够提供2Volts的改进输出电压,0.4 A的电流。谐振组件(即电感器和电容器)的适当设计,与硬开关转换器相比,软开关谐振升压转换器的效率提高了2%。硬开关和软开关转换器均在开环中进行仿真。从输出电压和电流波形可以明显看出,与硬开关转换器相比,软开关转换器的建立时间更长,但是电压曲线,电流曲线和效率的改善克服了建立时间增加的缺点。与其他已报道的转换器相比,谐振软开关转换器提供了改进的性能,因此非常适合太阳能光伏应用。应用/改进:通过使用简单控制器的闭环控制或使用模糊逻辑控制器,可以进一步改善软开关转换器的性能。该转换器还可以用于任何分布式发电中的其他源。

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