Research and simulation analysis of control strategies for the large-scale grid-connected photovoltaic system

Dan Xu, Chen Du, Enyan Xie
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引用次数: 3

Abstract

With the continuous development of new energy technologies, solar photovoltaic(PV) plays an increasingly important role in modern society. There is still no workable technology research and project implementation plan for PV power grid control about the problem of large-scale PV grid. First of all, the paper analyzed the basic principle of the solar cell power generation and introduced the equivalent circuit model of solar cell. The solar cell is a nonlinear power supply. Environmental temperature and light intensity have an important effect on its output power. To make the solar cell convert solar energy into electrical energy most efficiently, it needs to be maximum power point tracked(MPPT). Secondly, the paper studied on the control strategy for photovoltaic grid power generation system and established grid model with photovoltaic power plants, including a system circuit model and the active control model. Then in turn it analyzed automatic generation control(AGC) response of the system under the power fluctuations of new energy and under off-grid PV power plant emergency situations, the effect of photovoltaic active control mode on the grid frequency modulation(FM), the coordination control simulation of realtime scheduling and AGC. Finally it gave some research conclusions of active control strategy on the side of main station with large-scale photovoltaic grid.
大型光伏并网系统控制策略的研究与仿真分析
随着新能源技术的不断发展,太阳能光伏(PV)在现代社会中发挥着越来越重要的作用。针对大规模光伏并网问题,目前还没有可行的光伏并网控制技术研究和项目实施方案。本文首先分析了太阳能电池发电的基本原理,介绍了太阳能电池的等效电路模型。太阳能电池是一种非线性电源。环境温度和光照强度对其输出功率有重要影响。为了使太阳能电池最有效地将太阳能转化为电能,需要对其进行最大功率点跟踪(MPPT)。其次,研究了光伏并网发电系统的控制策略,建立了光伏电站并网模型,包括系统电路模型和主动控制模型。然后分析了系统在新能源功率波动和离网光伏电站应急情况下的自动发电控制(AGC)响应、光伏主动控制方式对电网调频(FM)的影响、实时调度与AGC的协调控制仿真。最后给出了大型光伏并网主站侧主动控制策略的研究结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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