1 |
罗耀东, 田立军, 王垚, 等. 飞轮储能参与电网一次调频协调控制策略与容量优化配置[J]. 电力系统自动化, 2022, 46(9): 71-82.
|
|
LUO Y D, TIAN L J, WANG Y, et al. Coordinated control strategy and optimal capacity configuration for flywheel energy storage participating in primary frequency regulation of power grid[J]. Automation of Electric Power Systems, 2022, 46(9): 71-82.
|
2 |
张汝峰. 飞轮储能辅助火电机组调频技术研究[D]. 北京: 华北电力大学, 2021.
|
|
ZHANG R F. Research on frequency modulation technology of flywheel energy storage assisted thermal power unit[D].Beijing: North China Electric Power University, 2021.
|
3 |
何林轩, 李文艳. 飞轮储能辅助火电机组一次调频过程仿真分析[J]. 储能科学与技术, 2021, 10(5): 1679-1686.
|
|
HE L X, LI W Y. Simulation of the primary frequency modulation process of thermal power units with the auxiliary of flywheel energy storage[J]. Energy Storage Science and Technology, 2021, 10(5): 1679-1686.
|
4 |
刘宇宸. 飞轮-蓄电池混合储能系统调频特性研究[D]. 北京: 华北电力大学,2021.
|
|
LIU Y C. Study on frequency modulation characteristics of flywheel-battery hybrid energy storage system[D].Beijing: North China Electric Power University,2021.
|
5 |
秦昊, 秦立军, 白雪辰, 等. 辅助抽水蓄能调频的飞轮控制策略[J]. 储能科学与技术, 2022, 11(12): 3915-3925.
|
|
QIN H, QIN L J, BAI X C, et al. Flywheel control strategy for frequency modulation of auxiliary pumped storage[J]. Energy Storage Science and Technology, 2022, 11(12): 3915-3925.
|
6 |
洪烽, 梁璐, 逄亚蕾, 等. 基于自适应协同下垂的飞轮储能联合火电机组一次调频控制策略[J]. 热力发电, 2023, 52(1): 36-44.
|
|
HONG F, LIANG L, PANG Y L, et al. Primary frequency modulation control strategy of flywheel energy storage combined thermal power unit based on adaptive cooperative droop[J]. Thermal Power Generation, 2023, 52(1): 36-44.
|
7 |
隋云任, 梁双印, 黄登超, 等. 飞轮储能辅助燃煤机组调频动态过程仿真研究[J]. 中国电机工程学报, 2020, 40(8): 2597-2606.
|
|
SUI Y R, LIANG S Y, HUANG D C, et al. Simulation study on frequency modulation process of coal burning plants with auxiliary of flywheel energy storage[J]. Proceedings of the CSEE, 2020, 40(8): 2597-2606.
|