风光互补发电系统最大功率点跟踪控制研究

C. Xing, X. Xi, Xin He, C. Xiang, Shengnan Li, Zhi Xu
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引用次数: 2

摘要

本文简要分析了风光互补发电系统的技术优势,建立了风力发电系统、光伏发电系统和蓄电池的模型,重点研究了风光互补发电系统的关键——最大功率点跟踪(MPPT)控制,并对风光互补发电系统的最大功率进行了详细分析。为了提高风能和太阳能混合发电系统并网后的稳定性。为其并网逆变器。提出了一种分段控制和改进双闭环比例积分的控制策略。即根据景物的强弱进行分割。采用风机转速外环——风机电流内环和直流升压电路电压外环——并网电流内环的双重结构控制。以减弱对栅格频率和幅值的影响。首先分析风力发电、光伏发电和蓄电池的数学模型。然后构建互补发电系统,并提出控制策略。最后通过仿真软件对仿真结果进行验证。仿真结果表明,所提出的控制策略能够有效地实现系统的稳定运行。对于风能和太阳能混合发电系统并网后的不同时段。减小并网电流波动,保持电压电流稳定。提高电网吸收新能源的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on Maximum Power Point Tracking Control of Wind-Solar Hybrid Generation System
This article briefly analyzes the technical advantages of the wind-solar hybrid power generation system, builds models of wind power generation systems, photovoltaic systems, and storage batteries, focusing on the key to wind and photovoltaic power generation systems-maximum power point tracking (MPPT) control, and detailed analysis of the maximum wind and solar power. In order to improve the stability of the wind and solar hybrid power generation system after being connected to the grid. For its grid-connected inverter. A control strategy is proposed: segmented control and improved double closed-loop proportional integral (Proportion Integration, PI). That is to segment according to the strength of the scenery. Adopt the dual structure control of the outer ring of fan speed-the inner ring of fan current and the outer ring of DC boost circuit voltage-the inner ring of grid-connected current. In order to weaken the influence on the frequency and amplitude of the grid. First analyze the mathematical models of wind power generation, photovoltaic power generation, and storage batteries. Then build a complementary power generation system and propose a control strategy. Finally, the simulation is verified by simulation software. The simulation results show that the proposed control strategy can effectively achieve stable operation. For different periods after the wind and solar hybrid power generation system is connected to the grid. Reduce the fluctuation of grid-connected current and maintain the stability of voltage and current. Increase the power grid's ability to absorb new energy.
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