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FPGA-based real time simulation and control of grid-connected photovoltaic systems

机译:基于FPGA的光伏并网系统实时仿真与控制

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摘要

Nowadays, FPGA devices are widely used to build control platforms in various fields of real time applications such as wireless telecommunications, image and signal processing, robotics and renewable energy systems. In grid-connected photovoltaic (PV) systems, an effective control strategy is needed for an efficiently use of solar energy as well as for energy supplies optimization. This paper presents an investigation, modelling and FPGA based digital controller design of a two-stage grid connected photovoltaic (GCPV) system. The basic idea of the proposed control structure is to operate the PV system as an active power generator and reactive power regulator. Firstly, a comprehensive study of dynamic behaviour of a two-stage GCPV system using Matlab/Simulink was presented. Subsequently, a digital circuit design of Incremental Conductance (IncCond) algorithm and decoupled active-reactive power control algorithm is carried out using the Hardware Description Language (VHDL). The simulation results confirm the accuracy of the adopted control strategy as well as the feasibility of the overall FPGA based control circuit.
机译:如今,FPGA器件被广泛用于在实时应用的各个领域中构建控制平台,例如无线电信,图像和信号处理,机器人技术和可再生能源系统。在并网光伏(PV)系统中,需要有效的控制策略来有效利用太阳能以及优化能源供应。本文提出了一种研究,建模和基于FPGA的两级并网光伏(GCPV)系统的数字控制器设计。所提出的控制结构的基本思想是使光伏系统作为有功发电机和无功调节器运行。首先,对使用Matlab / Simulink的两阶段GCPV系统的动力学行为进行了全面研究。随后,使用硬件描述语言(VHDL)进行了增量电导(IncCond)算法和解耦的有功-无功功率控制算法的数字电路设计。仿真结果证实了所采用控制策略的准确性以及整个基于FPGA的控制电路的可行性。

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