G. Themozhi, K. Srinivasan, T. Arun Srinivas, A. Prabha
{"title":"Analysis of suitable converter for the implementation of drive system in solar photovoltaic panels","authors":"G. Themozhi, K. Srinivasan, T. Arun Srinivas, A. Prabha","doi":"10.20998/2074-272x.2024.1.03","DOIUrl":null,"url":null,"abstract":"Introduction. Photovoltaic (PV) systems gained immense attraction in the recent years since it produces electricity without causing environmental pollution through direct conversion of solar irradiance into electricity. Solar PV panels produce DC power. The magnitude of this DC power varies with temperature and irradiance of the sun rays. The DC supply from solar panels can be regulated using DC-DC converter and then can further be converted into the desired AC voltage by means of a voltage source inverter before being fed to an induction motor (IM). The speed and torque of an IM, fed from PV arrays, can vary due to the variation in the output power of the panels. Goal of this work is to improve the dynamic performance and reduce the torque ripple of Cuk converter-inverter fed IM drive system. The novelty of the current work proposes interleaved Cuk converter between solar PV DC source and the inverter. Purpose. To provide continuous current using an interleaved Cuk converter to the IM drive and in turn to reduce the torque ripple in IM. Methodology. Introduced an interleaved Cuk converter which is a blend of Cuk converters connected in parallel with each other between solar PV arrays and IM drive system. Originality. Simulation results are obtained for Cuk converter and interleaved Cuk converter fed IM drive by means of MATLAB. The hardware setup for the same IM systems is developed. Practical value. Simulation and hardware results are coincided with each other and it is subject from the simulation and hardware results that the interleaved Cuk converter-inverter fed IM system produced results superior than the Cuk converter inverter fed IM drive system.","PeriodicalId":170736,"journal":{"name":"Electrical Engineering & Electromechanics","volume":"154 3-4","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-01-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Electrical Engineering & Electromechanics","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.20998/2074-272x.2024.1.03","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
Introduction. Photovoltaic (PV) systems gained immense attraction in the recent years since it produces electricity without causing environmental pollution through direct conversion of solar irradiance into electricity. Solar PV panels produce DC power. The magnitude of this DC power varies with temperature and irradiance of the sun rays. The DC supply from solar panels can be regulated using DC-DC converter and then can further be converted into the desired AC voltage by means of a voltage source inverter before being fed to an induction motor (IM). The speed and torque of an IM, fed from PV arrays, can vary due to the variation in the output power of the panels. Goal of this work is to improve the dynamic performance and reduce the torque ripple of Cuk converter-inverter fed IM drive system. The novelty of the current work proposes interleaved Cuk converter between solar PV DC source and the inverter. Purpose. To provide continuous current using an interleaved Cuk converter to the IM drive and in turn to reduce the torque ripple in IM. Methodology. Introduced an interleaved Cuk converter which is a blend of Cuk converters connected in parallel with each other between solar PV arrays and IM drive system. Originality. Simulation results are obtained for Cuk converter and interleaved Cuk converter fed IM drive by means of MATLAB. The hardware setup for the same IM systems is developed. Practical value. Simulation and hardware results are coincided with each other and it is subject from the simulation and hardware results that the interleaved Cuk converter-inverter fed IM system produced results superior than the Cuk converter inverter fed IM drive system.
导言。光伏(PV)系统通过将太阳辐照度直接转化为电能,在不造成环境污染的情况下生产电力,因此近年来获得了巨大的吸引力。太阳能光伏板产生直流电。直流电的大小随温度和太阳光辐照度的变化而变化。太阳能电池板产生的直流电可以通过直流-直流转换器进行调节,然后通过电压源逆变器进一步转换成所需的交流电压,再输送给感应电机(IM)。由光伏阵列馈电的感应电机的速度和扭矩会因电池板输出功率的变化而变化。这项工作的目标是改善 Cuk 转换器-逆变器馈入感应电机驱动系统的动态性能并降低扭矩纹波。当前工作的新颖之处在于在太阳能光伏直流电源和逆变器之间采用交错式 Cuk 转换器。目的是使用交错 Cuk 转换器为 IM 驱动器提供连续电流,进而降低 IM 的扭矩纹波。方法。引入交错 Cuk 转换器,它是太阳能光伏阵列和 IM 驱动系统之间相互并联的 Cuk 转换器的混合体。原创性。通过 MATLAB 获得了 Cuk 转换器和交错 Cuk 转换器馈入 IM 驱动器的仿真结果。为相同的 IM 系统开发了硬件设置。实用价值。仿真和硬件结果是一致的,而且从仿真和硬件结果可以看出,交错 Cuk 转换器-逆变器馈电 IM 系统的结果优于 Cuk 转换器-逆变器馈电 IM 驱动系统。