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Fuzzy Logic Based-SVPWM Current Controller for Inverter-Interfaced Distributed Generation System

机译:基于模糊逻辑的SVPWM电流控制器的逆变器接口分布式发电系统

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The market penetration of the distributed generation (DG) is anticipated to increase radically due to global energy crisis. To meet the future energy demand, DGs are one of the viable options, but the complexity is to integrate DGs with the utility grid. The synchronization is needed in order to ensure 1) the grid stability 2) the injection of high quality power to the utility grid and 3) high efficiency etc. For that, pulse width modulated voltage source inverter (PWM-VSI) is used to interface the DGs with the utility grid. However, the inverter performance is largely depends on the applied current control strategy. In this paper for current control of the PWM-VSI, fuzzy logic based SVPWM technique is employed due to its fast dynamic response and better Dc-link voltage utilization. Further in this paper an effort has been made to design the current error compensation scheme by using fuzzy logic controller in order to improve the overall performance of grid connected inverter system. The studied system is modeled and simulated in the MATLAB/Simulink environment.
机译:由于全球能源危机,预计分布式发电(DG)的市场渗透率将急剧增加。为了满足未来的能源需求,DG是可行的选择之一,但是复杂性在于将DG与公用电网集成在一起。需要进行同步,以确保1)电网稳定性2)向公用电网注入高质量的电力,以及3)高效等。为此,使用脉宽调制电压源逆变器(PWM-VSI)进行接口带有公用电网的DG。但是,逆变器的性能在很大程度上取决于所应用的电流控制策略。在本文中,由于PWM-VSI的快速动态响应和更好的Dc-link电压利用率,因此采用基于模糊逻辑的SVPWM技术进行PWM-VSI的电流控制。本文进一步尝试通过使用模糊逻辑控制器来设计电流误差补偿方案,以提高并网逆变器系统的整体性能。在MATLAB / Simulink环境中对所研究的系统进行建模和仿真。

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