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Realization of Cascaded H-Bridge Multilevel Inverter Based Grid Integrated Solar Energy System With Band Stop Generalized Integral Control

机译:基于级联的H桥多级逆变器的GRID集成太阳能系统的实现,具有带阻止广义整体控制

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摘要

The high power grid integrated solar energy system (GISES) prefers multilevel inverters for reduced switching losses and lower harmonics in the injected current. The integration of solar PV array with multilevel inverters (MIs) requires a proper selection of multioutput dc–dc converters. Moreover, the performance of two-stage GISES with isolated multioutput dc–dc converters and dc–ac multilevel inverters are less investigated in the literature. In this article, a cascaded H-bridge multilevel inverter with isolated multiple-output zeta converter is used. It exhibits reduced switching stresses and improved efficiency, concerning to multiple dc–dc converters fed MI. The maximum power point tracking method, based on the firefly algorithm, is implemented on the isolated multiple output zeta converter to ensure maximum power extraction at adverse irradiation conditions. The power quality improvement and active power exchange through a band stop generalized integral control, and the grid synchronization is achieved through an enhanced phase-locked loop method. The proposed system is designed and simulated in MATLAB/Simulink, and the results validate the theoretical claims. The performance of the GISES is verified using an experimental prototype developed with the help of a dSPACE Micro Lab Box and a solar PV simulator.
机译:高电网集成太阳能系统(G型)更喜欢多级逆变器,以降低注入电流的开关损耗和更低的谐波。 The integration of solar PV array with multilevel inverters (MIs) requires a proper selection of multioutput dc–dc converters.此外,在文献中较少研究了与隔离的多输出DC-DC转换器和DC-AC多级逆变器的两级亮度的性能。在本文中,使用带隔离的多输出Zeta转换器的级联H桥多级逆变器。对于多个DC-DC转换器,它表现出降低的开关应力和提高效率,而馈送MI的多个DC-DC转换器。基于萤火虫算法的最大功率点跟踪方法在隔离的多输出Zeta转换器上实现,以确保在不利照射条件下的最大功率提取。通过频带停止广义积分控制的电力质量改进和有效功率交换,通过增强的锁相环法实现了电网同步。在MATLAB / SIMULINK中设计和模拟所提出的系统,结果验证了理论索赔。使用借助于DSPACE Micro Lab盒和太阳能光伏模拟器开发的实验原型来验证Glises的性能。

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