Electric Power ›› 2026, Vol. 59 ›› Issue (4): 59-69.DOI: 10.11930/j.issn.1004-9649.202509069
• New-Type Power Grid • Previous Articles Next Articles
YAN Zhaoyang1(
), LI Jie1, LIU Shaofeng2, DING Chaojie1, ZHOU Tian2(
), CHANG Kang2, YANG Li2
Received:2025-09-29
Online:2026-04-20
Published:2026-04-28
Supported by:YAN Zhaoyang, LI Jie, LIU Shaofeng, DING Chaojie, ZHOU Tian, CHANG Kang, YANG Li. A quantitative evaluation method for power system inertia considering the proportion of multiple resources in operation[J]. Electric Power, 2026, 59(4): 59-69.
| 方案 | S0/(Hz·s–1) | fss/Hz | Δfmax/Hz |
| 1 | – | – | |
| 2 | – | – | |
| 3 | – | – |
Table 1 Frequency characteristics of power system under different inertia evaluation conditions
| 方案 | S0/(Hz·s–1) | fss/Hz | Δfmax/Hz |
| 1 | – | – | |
| 2 | – | – | |
| 3 | – | – |
| 电源 | 装机容量/MW | 占比/% |
| 煤电 | 31.71 | |
| 燃机 | 8.54 | |
| 核电 | 3.35 | |
| 抽蓄 | 1.56 | |
| 风电 | 14.19 | |
| 光伏 | 37.68 | |
| 储能 | 2.97 |
Table 2 Statistical table of installed capacity of various types of planned power supply in a regional power grid
| 电源 | 装机容量/MW | 占比/% |
| 煤电 | 31.71 | |
| 燃机 | 8.54 | |
| 核电 | 3.35 | |
| 抽蓄 | 1.56 | |
| 风电 | 14.19 | |
| 光伏 | 37.68 | |
| 储能 | 2.97 |
| 场景 | 资源类型 | 惯性时 间常数/s | 惯量贡献 占比/% | 系统总惯性 时间常数/s |
| 传统电力系统 | 火电机组 | 4.7 | 80 | 4.6 |
| 感应电动机 | 0.5 | 10 | ||
| 高比例新能源接入 | 风电机组 | 1.3 | 25 | 3.8 |
| 光伏系统 | 1.7 | 30 | ||
| 火电机组 | 4.7 | 45 | ||
| 储能侧和电网侧 参与惯量支撑 | 火电机组 | 4.7 | 30 | 4.2 |
| 风电机组 | 1.3 | 15 | ||
| 光伏系统 | 1.7 | 15 | ||
| 储能系统 | 2.1 | 40 |
Table 3 Comparison of inertia of power system in three scenarios
| 场景 | 资源类型 | 惯性时 间常数/s | 惯量贡献 占比/% | 系统总惯性 时间常数/s |
| 传统电力系统 | 火电机组 | 4.7 | 80 | 4.6 |
| 感应电动机 | 0.5 | 10 | ||
| 高比例新能源接入 | 风电机组 | 1.3 | 25 | 3.8 |
| 光伏系统 | 1.7 | 30 | ||
| 火电机组 | 4.7 | 45 | ||
| 储能侧和电网侧 参与惯量支撑 | 火电机组 | 4.7 | 30 | 4.2 |
| 风电机组 | 1.3 | 15 | ||
| 光伏系统 | 1.7 | 15 | ||
| 储能系统 | 2.1 | 40 |
| 1 |
贾东梨, 任昭颖, 刘科研, 等. 协调分布式发电商与负荷用户利益的综合能源站的优化运行[J]. 中国电力, 2025, 58 (12): 128- 136.
|
|
JIA Dongli, REN Zhaoying, LIU Keyan, et al. Optimization operation of integrated energy station coordinating the interests of distributed generation provider and load users[J]. Electric Power, 2025, 58 (12): 128- 136.
|
|
| 2 | 谭玲玲, 张文龙, 康志豪, 等. 计及惯量响应与一次调频参数优化的新能源基地构网型储能规划[J]. 中国电力, 2025, 58 (7): 147- 161. |
| TAN Lingling, ZHANG Wenlong, KANG Zhihao, et al. Grid-forming storage planning for renewable energy bases considering the co-optimization of inertia response and primary frequency regulation parameters[J]. Electric Power, 2025, 58 (7): 147- 161. | |
| 3 |
刘水, 彭宏亮, 肖东裕, 等. 混合型有载调压变压器拓扑结构及控制策略研究[J]. 浙江电力, 2024, 43 (10): 124- 132.
|
|
LIU Shui, PENG Hongliang, XIAO Dongyu, et al. Research on topological structure and control strategy of a hybrid on-load tap changer transformer[J]. Zhejiang Electric Power, 2024, 43 (10): 124- 132.
|
|
| 4 | 王泽森, 王宣元, 孔帅皓, 等. 计及多时间尺度碳排放因子的虚拟电厂-配电网协同调度[J]. 中国电力, 2026, 59 (3): 14- 26. |
| WANG Zesen, WANG Xuanyuan, KONG Shuaihao, et al. Coordinated dispatch of virtual power plant and distribution network considering multi-time scale carbon emission factors[J]. Electric Power, 2026, 59 (3): 14- 26. | |
| 5 |
李逸欣, 吴伟杰, 张伊宁, 等. 大规模新能源接入的电力系统惯量缺失机理及惯量水平评估[J]. 南方能源建设, 2024, 11 (5): 132- 139.
|
|
LI Yixin, WU Weijie, ZHANG Yining, et al. Mechanism of inertia loss and evaluation of inertia level in power systems with large scale new energy access[J]. Southern Energy Construction, 2024, 11 (5): 132- 139.
|
|
| 6 |
洪鎏, 吕道鑫, 杨忠涛, 等. 新能源并网电力系统临界惯量线性化计算方法及应用[J]. 综合智慧能源, 2025, 47 (9): 10- 17.
|
|
HONG Liu, LYU Daoxin, YANG Zhongtao, et al. Linearized calculation method of critical inertia in energy power systems with renewable energy and its application[J]. Integrated Intelligent Energy, 2025, 47 (9): 10- 17.
|
|
| 7 |
孙华东, 赵兵, 徐式蕴, 等. 高比例电力电子电力系统强度的定义、分类及分析方法[J]. 中国电机工程学报, 2024, 44 (18): 7039- 7048.
|
|
SUN Huadong, ZHAO Bing, XU Shiyun, et al. Definition, classification, and analysis method of the strength of power system integrated with high penetration of power electronics[J]. Proceedings of the CSEE, 2024, 44 (18): 7039- 7048.
|
|
| 8 | 冯燕波, 王姗姗, 吴广禄, 等. 新能源孤岛柔直送出系统耗能电阻优化配置研究[J]. 浙江电力, 2024, 43 (7): 94- 102. |
| FENG Yanbo, WANG Shanshan, WU Guanglu, et al. Study on optimal configuration of energy-dissipating resistors in VSC-HVDC system for new energy island[J]. Zhejiang Electric Power, 2024, 43 (7): 94- 102. | |
| 9 |
周洋, 黄德志, 李培栋, 等. 考虑平衡端点相位不对称及光伏接入的低压配电网三相潮流模型[J]. 中国电力, 2024, 57 (10): 190- 198.
|
|
ZHOU Yang, HUANG Dezhi, LI Peidong, et al. A three-phase power flow model for low-voltage distribution networks considering balanced bus phase asymmetry and photovoltaic access[J]. Electric Power, 2024, 57 (10): 190- 198.
|
|
| 10 |
张睿琪, 李梦骄, 杨洪明, 等. 动态无功补偿设备支撑高比例新能源系统电压稳定能力分析[J]. 湖南电力, 2024, 44 (4): 27- 33.
|
|
ZHANG Ruiqi, LI Mengjiao, YANG Hongming, et al. Analysis of voltage stability capability of dynamic reactive power compensation devices supporting high proportional new energy systems[J]. Hunan Electric Power, 2024, 44 (4): 27- 33.
|
|
| 11 |
宋玲燕, 赵兴勇, 高兰香, 等. 基于飞轮储能的直流微电网虚拟惯量自适应控制策略[J]. 电气自动化, 2023, 45 (6): 45- 48.
|
|
SONG Lingyan, ZHAO Xingyong, GAO Lanxiang, et al. Virtual inertia adaptive control strategy forDC microgrids based on flywheel energy storage[J]. Electrical Automation, 2023, 45 (6): 45- 48.
|
|
| 12 |
宋朋飞, 汪马翔, 杨桂兴, 等. 一种用于储能系统的动态电压-频率复合控制方法[J]. 广东电力, 2023, 36 (8): 8- 14.
|
|
SONG Pengfei, WANG Maxiang, YANG Guixing, et al. A dynamic voltage-frequency combined control method for energy storage system[J]. Guangdong Electric Power, 2023, 36 (8): 8- 14.
|
|
| 13 |
杨黎, 兰怡希, 林玲, 等. 风储系统中储能虚拟惯量评估与频率支撑技术[J]. 浙江电力, 2024, 43 (6): 52- 60.
|
|
YANG Li, LAN Yixi, LIN Ling, et al. A virtual inertia assessment and frequency support technology for wind-storage power generation system[J]. Zhejiang Electric Power, 2024, 43 (6): 52- 60.
|
|
| 14 |
刘硕, 马兆兴, 刘金鑫, 等. 面向新能源消纳的新型电力系统优化运行策略[J]. 湖南电力, 2024, 44 (1): 59- 66.
|
|
LIU Shuo, MA Zhaoxing, LIU Jinxin, et al. Optimal operation strategies of new power system aimed at renewable energy system consumption[J]. Hunan Electric Power, 2024, 44 (1): 59- 66.
|
|
| 15 |
王兴国, 周泽昕, 程琪. 新能源送出线路高灵敏序电流差动保护[J]. 浙江电力, 2025, 44 (10): 27- 37.
|
|
WANG Xingguo, ZHOU Zexin, CHENG Qi. A highly sensitive sequence-current differential protection method for grid-connected renewable energy transmission lines[J]. Zhejiang Electric Power, 2025, 44 (10): 27- 37.
|
|
| 16 |
ASHTON P M, SAUNDERS C S, TAYLOR G A, et al. Inertia estimation of the GB power system using synchrophasor measurements[J]. IEEE Transactions on Power Systems, 2015, 30 (2): 701- 709.
|
| 17 |
邓祥力, 陈聪颖. 频率时空差异下考虑功率波动的新能源主动调频优化方法[J]. 浙江电力, 2025, 44 (12): 22- 34.
|
|
DENG Xiangli, CHEN Congying. An optimization method for active frequency regulation of renewable energy accounting for power fluctuations under spatiotemporal differences[J]. Zhejiang Electric Power, 2025, 44 (12): 22- 34.
|
|
| 18 |
滕贤亮, 谈超, 昌力, 等. 高比例新能源电力系统有功功率与频率控制研究综述及展望[J]. 电力系统自动化, 2023, 47 (15): 12- 35.
|
|
TENG Xianliang, TAN Chao, CHANG Li, et al. Review and prospect of research on active power and frequency control in power system with high proportion of renewable energy[J]. Automation of Electric Power Systems, 2023, 47 (15): 12- 35.
|
|
| 19 |
孙传永, 孙恒阳, 黄自鹏, 等. 基于自适应分段转动惯量的虚拟同步发电机控制策略[J]. 湖南电力, 2025, 45 (6): 114- 119.
|
|
SUN Chuanyong, SUN Hengyang, HUANG Zipeng, et al. Control strategy of virtual synchronous generator based on adaptive segmented moment of inertia[J]. Hunan Electric Power, 2025, 45 (6): 114- 119.
|
|
| 20 |
严干贵, 王铭岐, 段双明, 等. 考虑荷电状态恢复的储能一次调频控制策略[J]. 电力系统自动化, 2022, 46 (21): 52- 61.
|
|
YAN Gangui, WANG Mingqi, DUAN Shuangming, et al. Primary frequency regulation control strategy of energy storage considering state of charge recovery[J]. Automation of Electric Power Systems, 2022, 46 (21): 52- 61.
|
|
| 21 |
李志军, 郭燕龙, 苗庆玉. 基于解析法的高比例可再生能源系统惯量支撑储能配置[J]. 电测与仪表, 2023, 60 (11): 11- 18.
|
|
LI Zhijun, GUO Yanlong, MIAO Qingyu. High proportion of renewable energy storage system for inertial support energy storage configuration based on analytical method[J]. Electrical Measurement & Instrumentation, 2023, 60 (11): 11- 18.
|
|
| 22 |
叶婧, 周正坤, 何杰辉, 等. 计及负荷侧惯量和故障概率的两阶段鲁棒机组组合[J]. 山东电力技术, 2025, 52 (4): 1- 10.
|
|
YE Jing, ZHOU Zhengkun, HE Jiehui, et al. Two stage robust unit combination considering load side inertia and fault probability[J]. Shandong Electric Power, 2025, 52 (4): 1- 10.
|
|
| 23 | 杨思燃, 杨苓, 李毅博, 等. 基于深度特征学习与优化回归建模的电力系统惯量估计策略[J]. 湖南电力, 2026, 46 (1): 107- 113. |
| YANG Siran, YANG Ling, LI Yibo, et al. Power system inertia estimation strategy based on deep feature learning and optimized regression modeling[J]. Hunan Electric Power, 2026, 46 (1): 107- 113. | |
| 24 |
刘海涛, 朱康凯, 王宇昊, 等. 考虑“源-荷”双侧调频的电力系统双层优化调度模型[J]. 电测与仪表, 2025, 62 (11): 154- 166.
|
|
LIU Haitao, ZHU Kangkai, WANG Yuhao, et al. Bi-level unit commitment optimized dispatching model of power system with ‘source-load’ bilateral frequency regulation[J]. Electrical Measurement & Instrumentation, 2025, 62 (11): 154- 166.
|
|
| 25 |
黄振宁, 孙宁, 邵华强, 等. 考虑节点惯量的新型电力系统连锁故障仿真模型及关键节点辨识[J]. 山东电力技术, 2024, 51 (7): 35- 44.
|
|
HUANG Zhenning, SUN Ning, SHAO Huaqiang, et al. Novel power system fault simulation model and key node identification[J]. Shandong Electric Power, 2024, 51 (7): 35- 44.
|
|
| 26 |
SC Johnson, D Papageorgiou, D Mallapragada, et al. Evaluating rotational inertia as a component of grid reliability with high penetrations of variable renewable energy[J]. Energy, 2019, (180): 258- 271.
|
| 27 |
宋嘉雯, 王琦, 王亚伦, 等. 计及负荷等效惯量的新型电力系统机组组合安全优化方法[J]. 电力建设, 2025, 46 (9): 111- 119.
|
|
SONG Jiawen, WANG Qi, WANG Yalun, et al. Security optimization method for unit commitment in new power systems considering load equivalent inertia[J]. Electric Power Construction, 2025, 46 (9): 111- 119.
|
|
| 28 | 马覃峰, 安甦, 刘明顺, 等. 考虑风光储调频贡献度的新型电力系统频率特性[J]. 南方电网技术, 2024, 18 (11): 129- 140. |
| MA Qinfeng, AN Su, LIU Mingshun, et al. Frequency characteristics of new power system considering the frequency modulation contribution of wind power-photovoltaic-energy storage[J]. Southern Power System Technology, 2024, 18 (11): 129- 140. | |
| 29 |
蔡晖, 彭竹弈, 许偲轩, 等. 基于SFR模型的含大规模风电电力系统最小惯量需求评估[J]. 可再生能源, 2025, 43 (6): 812- 819.
|
|
CAI Hui, PENG Zhuyi, XU Sixuan, et al. Assessment of minimum inertia requirements for power systems containing large-scale wind power based on the SFR model[J]. Renewable Energy Resources, 2025, 43 (6): 812- 819.
|
|
| 30 |
翟进乾, 贾会东, 黄延润, 等. 惯量调节下新能源并网电力系统频率波动控制[J]. 电子设计工程, 2025, 33 (5): 138- 141, 146.
|
|
ZHAI Jinqian, JIA Huidong, HUANG Yanrun, et al. Frequency fluctuation control of new energy grid connected power system under inertia regulation[J]. Electronic Design Engineering, 2025, 33 (5): 138- 141, 146.
|
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||
