Improved Sigma Z-source Inverter-fed Grid System for Wind Power Generation

V. Sharma, Jahangir Hossain, Yongheng Yang, S. M. N. Ali, M. Kashif
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Abstract

Renewable energy is an important solution to reduce carbon emissions for a sustainable environment. Wind energy has significantly been recognized and utilized as the most preferred renewable energy source in the present time across Australia and worldwide. The southern coastline and elevated areas of Australia have good wind resources. However, the traditional boost converter and impedance source networks fail to carter the high voltage demand of the wind power generation system. In this regard, a new topology of impedance source networks, called Improved Sigma-Z-source, is proposed which facilitates a high output voltage gain. The network replaces the conventional inductor arrangement in traditional Z-source and consists of two capacitors connected in series with secondary windings of the transformer. The proposed system has a high dc voltage gain at a low turn ratio. The relevant modeling of design parameters and simulation results are presented in the paper.
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用于风力发电的改进型Sigma z源逆变电网系统
可再生能源是减少碳排放、实现可持续环境的重要解决方案。目前,风能已经被公认为是澳大利亚乃至全世界最受欢迎的可再生能源。澳大利亚南部海岸线和高架地区拥有良好的风力资源。然而,传统的升压变换器和阻抗源网络不能满足风力发电系统的高压需求。在这方面,提出了一种新的阻抗源网络拓扑,称为改进的sigma - z源,它有助于高输出电压增益。该网络取代了传统z源的传统电感装置,由两个电容器与变压器的二次绕组串联组成。该系统在低匝比下具有较高的直流电压增益。文中给出了相关设计参数的建模和仿真结果。
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