现代电力系统仿真与绿色电能新技术教育部重点实验室(东北电力大学),吉林市,吉林省,132012
纸质出版:2025
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江守其, 郑双锁, 李国庆, 等. 计及调频死区的柔性直流系统频率主动支撑自适应协调控制策略[J]. 中国电机工程学报, 2025,45(20):7893-7904.
JIANG Shouqi, ZHENG Shuangsuo, LI Guoqing, et al. Adaptive Coordinated Control Strategy of Frequency Active Support for MMC-HVDC Systems Considering Frequency Regulation Dead Zone[J]. 2025, 45(20): 7893-7904.
江守其, 郑双锁, 李国庆, 等. 计及调频死区的柔性直流系统频率主动支撑自适应协调控制策略[J]. 中国电机工程学报, 2025,45(20):7893-7904. DOI: 10.13334/j.0258-8013.pcsee.240812.
JIANG Shouqi, ZHENG Shuangsuo, LI Guoqing, et al. Adaptive Coordinated Control Strategy of Frequency Active Support for MMC-HVDC Systems Considering Frequency Regulation Dead Zone[J]. 2025, 45(20): 7893-7904. DOI: 10.13334/j.0258-8013.pcsee.240812.
为解决大规模新能源经柔直并网引起的系统惯量水平降低、阻尼及频率支撑能力下降等问题,提出一种基于调频死区实现柔性直流系统与同步发电机协同的多时间尺度调频控制策略,实现系统内多类型调频资源的广域协调互补。在惯量支撑方面,建立受端电网频率与直流电压、换流站子模块投入数量的耦合关系,分别提出基于本地直流电压和频率信息的送、受端换流站惯量支撑控制方法,通过提升控制维度拓宽子模块电容电压的运行范围,并根据系统安全约束设计控制参数及自适应恢复策略,实现柔直系统能量裕度的尽限利用。在阻尼调控与一次调频方面,面向不同扰动情景下的频率支撑需求,设计计及调频死区的送端换流站频率支撑自适应控制策略,并根据受端系统同步发电机的调节裕度提出调频死区的设计方法,使其具备阻尼调控和一次调频自适应切换功能,在保证系统频率稳定的同时降低扰动影响范围,实现不同扰动场景下柔直互联电网频率支撑的广域协调控制。最后,基于实时数字仿真平台构建柔直互联电网仿真模型,验证所提控制策略的有效性。
Aiming at the problems of reduced inertia level
damping
and frequency support capability caused by large-scale new energy connected to the grid through modular multilevel converter-based high voltage direct current (MMC-HVDC) transmission
a multi-time scale frequency regulation control strategy based on dead zone to realize the coordination of MMC-HVDC systems and synchronous generators is proposed
which realizes the wide-area coordination and complementarity of multi-type frequency regulation resources. In terms of inertia support
the coupling relationship between receiving-end AC grid frequency
DC voltage
and the number of modular multilevel converter (MMC) sub-modules is established. A control method for inertia support of sending-end and receiving-end MMC based on local DC voltage and frequency information is proposed respectively
whichbroadens the operating range of capacitor voltage by extending the control dimensionality. Control parameters and the adaptive recovery strategy are designed based on system safety constraints to achieve the maximum utilization of energy margin in the MMC-HVDC system. In terms of damping regulation and primary frequency regulation
an adaptive control strategy is proposed for frequency support of sending-end MMC considering frequency regulation dead zone to meet the frequency support demand under various disturbance scenarios. The dead zone is designed based on the adjustment margin of synchronous generator in receiving-end system
endowing it with the adaptive switching capability between damping regulation and primary frequency regulation. The proposed strategy realizes wide-area coordinated control of frequency support in MMC-HVDC interconnected grid under different disturbance scenarios
and reduces the range of disturbance impact while ensuring the frequency stability of the system. Finally
based on the real-time digital simulation platform
the simulation model of the MMC-HVDC system is built to verify the effectiveness of the proposed control strategy.
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