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An Adaptive Differentiation Frequency Based Advanced Reference Current Generator in Grid-Tied PV Applications

机译:基于网格绑定PV应用中的自适应差分频率的高级参考电流发生器

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摘要

In this article, an advanced reference current generator employing a combination of novel dual multi-layer fifth-order generalized integrator and adaptive differentiation frequency locked loop scheme (DMFOGI-dFLL) is proposed for mitigation of harmonics present in a grid-tied photovoltaic (PV) system. The proposed DMFOGI reference current generator is utilized to separate the fundamental constituents from grid voltage distortions, sag, swell, unbalance, frequency variation, and dc offset conditions. In addition, a dFLL is implemented to estimate the system frequency adaptively at grid transient conditions, which is fed as feedback to the pre-filtering unit. Similarly, a fuzzy tuned proportional integral derivative (FPID) voltage controller is incorporated in the proposed controller to maintain the power balance between dc and ac sides by controlling the dc-link voltage. An incremental conductance (IC) control technique is additionally utilized to generate maximum power from the PV source through a boost converter. The proposed system is simulated on MATLAB/SIMULINK under various transient conditions, such as steady state, voltage sag, swell, distorted, unbalance, dynamic load, and load shedding conditions. Moreover, the overall system is developed on a laboratory prototype experimental setup. The simulation outcomes are validated through an experimental platform under above said conditions in respect of total harmonic distortion (THD) of grid current and voltages. Results of the system are found well and also maintained within the standard limits of IEEE-519.
机译:在本文中,提出了一种采用新型双重多层次第五级通用积分器和自适应分化频率锁定环路方格(DMFoGi-DFLL)的组合的高级参考电流发生器,以减轻网格粘附光伏(PV)的谐波(PV ) 系统。所提出的DMFogi参考电流发生器用于将基本成分与电网电压失真,下垂,膨胀,不平衡,频率变化和DC偏移条件分开。另外,实现DFLL以在网格瞬态条件下自适应地估计系统频率,其被馈送为对预滤波单元的反馈。类似地,在所提出的控制器中结合了模糊调谐的比例积分衍生物(FPID)电压控制器,以通过控制DC连杆电压来维持DC和AC侧面之间的功率平衡。另外用于通过升压转换器从PV源产生最大功率的增量电导(IC)控制技术。在各种瞬态条件下,在MATLAB / Simulink上模拟所提出的系统,例如稳态,电压凹槽,膨胀,失真,不平衡,动态负载和负载脱落条件。此外,整个系统是在实验室原型实验设置上开发的。通过关于网格电流和电压的总谐波失真(THD)的上述条件下的实验平台验证了仿真结果。发现系统的结果良好,也保持在IEEE-519的标准限制范围内。

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