电导增量式Mppt混合可再生能源发电

Shurbhit Surage, M. Chawla
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引用次数: 0

摘要

在当前的全球能源环境中,可再生能源发电的重要性与日俱增。这背后的主要原因是化石燃料的稀缺性和与传统发电方式相关的环境风险。非传统能源的主要来源是风能和太阳能,它们很容易被利用。本文介绍了一种新的光伏与风力混合发电系统设计。为了提高该系统的生产率,提出了一种改进的m.p.p.t。该方法采用增量电导(IC) MPPT技术。在不同的气候条件下(太阳辐照度和温度),集成电路被用来确定光伏系统(pv)结构中的光伏发电机(pv)的最佳电压输出。利用增量电导来管理具有升压功能的变换器技术。P.M.S.G.用于确定风力发电系统在不同风流量下的最大输出电压。在Matlab2019b中进行了仿真,以测试所提出的MPPT的有效性。仿真结果验证了该方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hybrid Renewable Energy Generation Through Incremental Conductance Mppt
The relevance of electricity generation from renewable energy sources is growing every day in the current global energy environment. The scarcity of fossil fuels and the environmental risks connected with traditional power producing methods are the main reasons behind this. The major sources of non-conventional energy are wind and solar which can be harnessed easily. A new system design for hybrid photovoltaic and wind-power generation is introduced within this study. A Modified M.P.P.T. has been proposed to strengthen productivity of this system. The proposed approach employs the Incremental Conductance (IC) MPPT technique. Under varied climatic conditions (Solar irradiance & Temperature), IC is utilized to determine the optimum voltage output of a photo voltaic generator (P.V.G.) within the photo voltaic system (P.V.) structure. The Incremental Conductance is utilized to manage the converter’s technology having boosting function. The P.M.S.G. is used to determine the maximum voltage output for varied wind flow rates in wind turbine system. Simulations are conducted in Matlab2019b to test efficacy of the proposed MPPT. The proposed scheme's effectiveness can be supported with simulation results.
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