仿真
控制理论(社会学)
惯性
频率偏差
电压
电压源
自动频率控制
电容
传动系统
计算机科学
网格
频率网格
电容器
电力传输
水准点(测量)
传输(电信)
工程类
电气工程
控制(管理)
物理
数学
经典力学
量子力学
经济增长
人工智能
经济
电极
大地测量学
地理
几何学
作者
Zhipeng Shen,Jiebei Zhu,Leijiao Ge,Siqi Bu,Junbo Zhao,C. Y. Chung,Xialin Li,Chengshan Wang
标识
DOI:10.1109/tpwrs.2021.3088259
摘要
This paper proposes a novel variable-inertia emulation control (VIEC) scheme that enables voltage-source-converter based high-voltage DC (VSC-HVDC) transmission systems to flexibly support AC grid frequency stability like synchronous generators. The VIEC scheme allows us to extract the energy from the augmented DC capacitance for inertia emulation by controlling the DC voltage without affecting the stability of the AC system connected on the remote side. In particular, with the proposed VIEC scheme, the inertia time constant can be flexibly emulated and its value can be automatically adjusted according to the rate of change of grid frequency as well as grid frequency deviations. This leads to more effective inertial support across different timescales. Modal analysis is carried out to investigate the impacts of inertia and DC capacitance, and to obtain the optimal control parameters. The effectiveness and advantages of the proposed VIEC scheme are demonstrated on an IEEE benchmark system in the presence of faults and load changes.
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