Virtual Inertial Control of Small- and Medium-Sized Wind Turbines on Mobile Offshore Platforms with DC Microgrids

IF 1.9 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC International Transactions on Electrical Energy Systems Pub Date : 2024-11-28 DOI:10.1155/2024/3886096
Ruifang Zhang, Guoling Wang, Zhenyu Li, Fuqiao He, Chenghan Luo, Wensheng Cao
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Abstract

The renewable energy mobile offshore platform, which adopts the combined power supply of renewable energy and energy storage, is an important carrier for the development and utilization of marine resources. The randomness of renewable energy generation has a more prominent effect on the bus voltage stability and transient voltage deviation of the power system with small capacity and low inertia. Considering the operation and maintenance characteristics of the offshore platform, a virtual inertia control method for small- and medium-sized wind turbines is proposed. Firstly, by analyzing the characteristics of the renewable energy microgrid of the unattended offshore platform, considering the operating environment with high average wind speed at sea, the mechanical inertia in the wind turbine is selected as the energy source of virtual inertia. The structure of the wind power generation unit is analyzed, and small signal modeling is carried out. A virtual inertia control method based on power droop is proposed, and the rotational inertia and the damping coefficient are obtained from the characteristics of transient and steady-state analysis of the system. Finally, the DC microgrid experiment platform of the offshore platform is constructed, and it is verified that the proposed method makes full use of the characteristics of the offshore platform to enhance system inertia and improve the operational stability of the offshore platform DC microgrid system.

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带有直流微电网的海上移动平台上中小型风力发电机的虚拟惯性控制
采用可再生能源与储能联合供电的可再生能源移动式海上平台,是海洋资源开发利用的重要载体。可再生能源发电的随机性对小容量、低惯性电力系统母线电压稳定性和暂态电压偏差的影响更为突出。针对海上平台的运维特点,提出了一种中小型风力机的虚拟惯性控制方法。首先,通过分析海上无人值机平台可再生能源微网的特点,考虑海上平均风速较大的运行环境,选择风力机的机械惯性作为虚拟惯性的能量来源;分析了风力发电机组的结构,并进行了小信号建模。提出了一种基于功率下垂的虚拟惯性控制方法,通过对系统的暂态和稳态特性分析,得到了系统的转动惯量和阻尼系数。最后搭建了海洋平台直流微电网实验平台,验证了所提出的方法充分利用海洋平台的特点,增强了系统惯性,提高了海洋平台直流微电网系统的运行稳定性。
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来源期刊
International Transactions on Electrical Energy Systems
International Transactions on Electrical Energy Systems ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
6.70
自引率
8.70%
发文量
342
期刊介绍: International Transactions on Electrical Energy Systems publishes original research results on key advances in the generation, transmission, and distribution of electrical energy systems. Of particular interest are submissions concerning the modeling, analysis, optimization and control of advanced electric power systems. Manuscripts on topics of economics, finance, policies, insulation materials, low-voltage power electronics, plasmas, and magnetics will generally not be considered for review.
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