常用直流链路连接风光伏混合系统的性能研究

S. Nayak, H. Vinod
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引用次数: 3

摘要

基于可再生能源的DG系统越来越受到电力行业的关注,因为它们的大量可用性是免费和环保的,它们也是间歇性的,因此来自一个来源的电力预测是依赖的。因此,包括风能和太阳能的混合DG系统可以提高个人的功率预测。本文介绍了连接风能和太阳能混合发电系统的直流链路以及电力电子接口。该系统由PMSG作为风力发电机、太阳能电池阵列、dc-dc变换器和电网接口逆变器组成。采用功率控制策略提取最大功率。最大功率点跟踪(MPPT)控制是保证光伏发电系统输出尽可能处于最大功率的关键。在Matlab/Simulink环境下建立了风电与光伏系统的直流链路连接模型。仿真结果显示了不同负载下的混合风光伏系统的控制器性能和动态特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance study of common DC link connected wind and PV hybrid system
The renewable energy based DG system is acquiring more attention towards the power industries due to their abundant availability which is cost free and eco-friendly, they are intermittent in nature too, hence the power prediction from one source is dependent. Thus, a hybrid DG system involving wind and solar energies can increase the power prediction over an individual. This paper presents, the DC link connected hybrid wind and solar based DG system along with power electronics interfacing. The system consists of PMSG as a wind generator, solar array, dc-dc converter and grid interface inverter. Power control strategy is used to extract the maximum power. Maximum power point tracking (MPPT) control is essential to ensure the output of photovoltaic power generation system at the maximum power output as possible. The DC link connected model of wind and PV system is presented in Matlab/Simulink environment. The simulation results show the controller performance and dynamic behavior of the hybrid wind-PV system for different loads.
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