CSC-VSC Based Distributed Energy Grid Connection System and Its Control Strategy

Bing Xia, Zihu Wang, Gang Li, Xiaohua Lv, Guang Yang, Yong Liu
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Abstract

With the aim of carbon footprint reduction and energy internet construction, distributed renewable energies are vigorously developed, emphasizing the optimization and coordination of wind energy, solar energy, electric vehicle battery energy and so on. In order to make full use of the renewable energies and improve the flexibility of the power system, a distributed energy grid connection system based on current source converter (CSC)-voltage source converter (VSC) is proposed in this paper. The topology of the proposed system is introduced firstly. The system adopts CSC to realize partition grid and ac renewable energy connection, and a hybrid DC/DC converter which adopts CSC at the grid side and VSC at the load side to realize dc distributed renewable energy connection. A high-frequency modulation method is proposed to reduce the volume of the DC/DC converter. Then, the mathematical model of the system is analyzed. Based on the mathematical model, a comprehensive control strategy is proposed. The proposed method realizes the flexible power flow regulation in ac/dc distribution network and effective grid connection of distributed energy. Finally, the experimental model of a three-terminal CSC-VSC based distributed energy grid connection system is built on RT-LAB hardware in the loop simulation platform. The experimental results verify the correctness of the proposed system and the effectiveness of the proposed control method.
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基于CSC-VSC的分布式能源并网系统及其控制策略
以减少碳足迹和建设能源互联网为目标,大力发展分布式可再生能源,强调风能、太阳能、电动汽车电池能源等的优化与协调。为了充分利用可再生能源,提高电力系统的灵活性,本文提出了一种基于电流源变换器(CSC)-电压源变换器(VSC)的分布式能源并网系统。首先介绍了该系统的拓扑结构。系统采用CSC实现分区电网和交流可再生能源连接,采用混合DC/DC变换器在电网侧采用CSC,在负载侧采用VSC实现直流分布式可再生能源连接。为了减小DC/DC变换器的体积,提出了一种高频调制方法。然后,分析了系统的数学模型。基于数学模型,提出了一种综合控制策略。该方法实现了交直流配电网的灵活潮流调节和分布式能源的有效并网。最后,在RT-LAB硬件在环仿真平台上建立了基于CSC-VSC的三端分布式能源并网系统的实验模型。实验结果验证了所提系统的正确性和所提控制方法的有效性。
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