中国电力 ›› 2024, Vol. 57 ›› Issue (4): 61-67.DOI: 10.11930/j.issn.1004-9649.202310101
收稿日期:2023-10-31
录用日期:2024-01-29
发布日期:2024-04-23
出版日期:2024-04-28
作者简介:叶小宁(1990—),男,通信作者,博士,高级工程师,从事新能源发展规划、并网运行分析、新能源政策及市场机制研究,E-mail:yexiaoning@sgeri.sgcc.com.cn基金资助:
Xiaoning YE(
), Caixia WANG(
), Qionghui LI(
), Chao YANG(
)
Received:2023-10-31
Accepted:2024-01-29
Online:2024-04-23
Published:2024-04-28
Supported by:摘要:
随着全球能源转型深入推进,新能源快速发展,新能源高占比电力系统供应保障问题日益凸显,近期已成为部分国家关注的焦点。为此,首先详细分析了新能源出力特性以及在电力平衡、负荷支撑度等方面对电力供应保障的挑战;其次选取德国、美国和日本等新能源发展较早占比较高的典型国家,从政策法规、监测预警、调度运行管理等方面,深入研究了其在新能源高占比电力系统中采取的保障电力安全可靠供应的实践经验;最后结合中国新型电力系统建设的实际情况,提出了对中国新能源发展的启示,为中国电力供应保障提供一定的参考借鉴。
叶小宁, 王彩霞, 李琼慧, 杨超. 国外新能源高占比电力系统电力供应保障措施及启示[J]. 中国电力, 2024, 57(4): 61-67.
Xiaoning YE, Caixia WANG, Qionghui LI, Chao YANG. Power Supply Ensuring Measures and Implications of Foreign Countries' Power Systems with High Proportion of New Energy[J]. Electric Power, 2024, 57(4): 61-67.
| 停电事故 | 事故影响 | 新能源影响 | 新能源装机比例/% | |||
| 2017年2·8南澳大停电 | 停电30万kW,影响9万家庭 | 停电前1 h,新能源出力骤减63% | 45.6 | |||
| 2020年8月美国加州高温停电 | 停电100万kW,影响330万人 | 停电前1 h,新能源出力骤减54% | 27.0 | |||
| 2021年2月,美国得州寒潮停电 | 停电1650万kW,影响450万人 | 大量风电机组退出运行,损失64%的风电发电容量 | 30.5 |
表 1 近年来新能源相关电力供应安全事故汇总
Table 1 Summary of new energy-related power supply security accidents in recent years
| 停电事故 | 事故影响 | 新能源影响 | 新能源装机比例/% | |||
| 2017年2·8南澳大停电 | 停电30万kW,影响9万家庭 | 停电前1 h,新能源出力骤减63% | 45.6 | |||
| 2020年8月美国加州高温停电 | 停电100万kW,影响330万人 | 停电前1 h,新能源出力骤减54% | 27.0 | |||
| 2021年2月,美国得州寒潮停电 | 停电1650万kW,影响450万人 | 大量风电机组退出运行,损失64%的风电发电容量 | 30.5 |
| 输入电量/(万kW·h) | 输出电量/(万kW·h) | |||||
| 发电厂X | 115.3 | 用户A | 1.4 | |||
| 发电厂Y | 42.2 | 用户B | 11.2 | |||
| 从S购买 | 10.0 | 向C出售 | 90.0 | |||
| 从T购买 | 5.1 | 向D出售 | 70.0 | |||
| 合计 | 172.6 | 合计 | 172.6 | |||
表 2 15 min间隔内某个平衡组电量平衡案例
Table 2 Power balance case of a balance group within a 15 min interval
| 输入电量/(万kW·h) | 输出电量/(万kW·h) | |||||
| 发电厂X | 115.3 | 用户A | 1.4 | |||
| 发电厂Y | 42.2 | 用户B | 11.2 | |||
| 从S购买 | 10.0 | 向C出售 | 90.0 | |||
| 从T购买 | 5.1 | 向D出售 | 70.0 | |||
| 合计 | 172.6 | 合计 | 172.6 | |||
| 1 | 周原冰, 杨方, 余潇潇, 等. 中国能源电力碳中和实现路径及实施关键问题[J]. 中国电力, 2022, 55 (5): 1- 11. |
| ZHOU Yuanbing, YANG Fang, YU Xiaoxiao, et al. Realization pathways and key problems of carbon neutrality in China's energy and power system[J]. Electric Power, 2022, 55 (5): 1- 11. | |
| 2 | 单葆国, 冀星沛, 许传龙, 等. 近期全球能源供需形势分析及中国能源电力保供策略[J]. 中国电力, 2022, 55 (10): 1- 13. |
| SHAN Baoguo, JI Xingpei, XU Chuanlong, et al. Recent situation of global energy supply-demand and guarantee strategy of China's energy and power supply[J]. Electric Power, 2022, 55 (10): 1- 13. | |
| 3 | 张运洲, 刘俊, 张晋芳, 等. 中国新能源“后补贴时期” 发展分析[J]. 中国电力, 2019, 52 (4): 1- 7. |
| ZHANG Yunzhou, LIU Jun, ZHANG Jinfang, et al. Study on the development of renewable energy during "post-subsidy period" in China[J]. Electric Power, 2019, 52 (4): 1- 7. | |
| 4 | 崔杨, 安宁, 付小标, 等. 面向高比例新能源电力系统调峰需求的储能容量配置方法综述[J]. 东北电力大学学报, 2023, 43 (1): 1- 8. |
| CUI Yang, AN Ning, FU Xiaobiao, et al. Overview of energy storage capacity allocation methods for high-proportion new energy power system peak shaving demand[J]. Journal of Northeast Electric Power University, 2023, 43 (1): 1- 8. | |
| 5 | 黄碧斌, 张运洲, 王彩霞. 中国“十四五” 新能源发展研判及需要关注的问题[J]. 中国电力, 2020, 53 (1): 1- 9. |
| HUANG Bibin, ZHANG Yunzhou, WANG Caixia. New energy development and issues in China during the 14th five-year plan[J]. Electric Power, 2020, 53 (1): 1- 9. | |
| 6 | 国网能源研究院有限公司. 中国新能源发电分析报告2022[M]. 北京: 中国电力出版社, 2023. |
| 7 | 顾洪宾, 范慧璞, 谢越韬, 等. 双碳背景下全球可再生能源领域发展机遇展望[J]. 国际工程与劳务, 2022, (9): 22- 25. |
| 8 | 周天舒, 迟东训, 艾明晔. 双碳背景下可再生能源面临的挑战及对策建议[J]. 宏观经济管理, 2022, (7): 59- 65. |
| ZHOU Tianshu, CHI Dongxun, AI Mingye. Challenges of and countermeasures for renewable energy sources against the background of carbon peaking and carbon neutralization[J]. Macroeconomic Management, 2022, (7): 59- 65. | |
| 9 | 高海翔, 王小宇, 刘锋, 等. 未来电网运行形态研究[J]. 电工电能新技术, 2014, 33 (1): 58- 65. |
| GAO Haixiang, WANG Xiaoyu, LIU Feng, et al. Operation morphology design for future power grids[J]. Advanced Technology of Electrical Engineering and Energy, 2014, 33 (1): 58- 65. | |
| 10 | 林伯强, 占妍泓, 孙传旺. 面向碳中和的能源供需双侧协同发展研究[J]. 治理研究, 2022, (3): 24- 34, 125. |
| LIN Boqiang, ZHAN Yanhong, SUN Chuanwang. A study of the coordinated development of energy supplies and the demand for carbon neutrality[J]. Governance Studies, 2022, (3): 24- 34, 125. | |
| 11 | 张晓斐. 推动实现“双碳”目标背景下若干问题的思考研究[J]. 能源与节能, 2022, (4): 69- 71. |
| ZHANG Xiaofei. Thinking and research on several issues in context of promoting the realization of "dual carbon" goal[J]. Energy and Energy Conservation, 2022, (4): 69- 71. | |
| 12 | 袁怀宇, 李风琦. “双碳”目标影响供给侧结构性改革的机制与应对策略[J]. 理论探讨, 2022, (1): 140- 145. |
| YUAN Huaiyu, LI Fengqi. On Mechanism and Countermeasures of the impact of "Carbon Peaking and Carbon Neutrality Goals" on Supply-side Structural Reform[J]. Theoretical Investigation, 2022, (1): 140- 145. | |
| 13 | 刘瑞丰, 尹莉, 张浩, 等. 国际典型电力市场风能交易规则研究[J]. 华东电力, 2012, 40 (1): 10- 12. |
| LIU Ruifeng, YIN Li, ZHANG Hao, et al. Wind power trading rules in typical international electricity markets[J]. East China Electric Power, 2012, 40 (1): 10- 12. | |
| 14 | 王步云, 郭晨, 张炜, 等. 现货市场新能源参与方式及其对市场出清价格的影响分析[J]. 智慧电力, 2021, 49 (1): 56- 63. |
| WANG Buyun, GUO Chen, ZHANG Wei, et al. Participation patterns of renewable energy in spot electricity market and its impact on market clearing price[J]. Smart Power, 2021, 49 (1): 56- 63. | |
| 15 | 练依情, 郭祚刚, 喻磊, 等. 市场出清机制下综合能源服务商竞争策略[J]. 南方电网技术, 2019, 13 (7): 10- 16, 42. |
| LIAN Yiqing, GUO Zuogang, YU Lei, et al. Competition strategy of integrated energy service provider under pool-based market mechanism[J]. Southern Power System Technology, 2019, 13 (7): 10- 16, 42. | |
| 16 | 谢俊, 汪震, 杨欢, 等. 对未来电力市场形态的若干思考[J]. 电力科学与技术学报, 2011, 26 (4): 50- 56. |
| XIE Jun, WANG Zhen, YANG Huan, et al. Investigation on future electricity market modality[J]. Journal of Electric Power Science and Technology, 2011, 26 (4): 50- 56. | |
| 17 | 王彩霞, 李梓仟, 李琼慧, 等. 丹麦新能源参与电力市场机制及对中国的启示[J]. 中国电力, 2018, 51 (9): 143- 150. |
| WANG Caixia, LI Ziqian, LI Qionghui, et al. Participation mechanism of renewable energy in the electricity market in Denmark and its implications for China[J]. Electric Power, 2018, 51 (9): 143- 150. | |
| 18 | 王宣元, 马莉, 曲昊源. 美国得克萨斯州风电消纳的市场运行机制及启示[J]. 中国电力, 2017, 50 (7): 10- 18, 27. |
| WANG Xuanyuan, MA Li, QU Haoyuan. Market mechanisms for wind generation in ERCOT market and the inspiration for China[J]. Electric Power, 2017, 50 (7): 10- 18, 27. | |
| 19 | Ea Energy Analyses Agora. The Danish experience with integrating variable renewable energy[EB/OL]. (2015-09-01) [2017-07-15]. https://www.agora-energiewende.de/fileadmin2/Projekte/2015/integration-variabler-erneuerbarer-energien-daenemark/Agora_082_Deutsch-Daen_Dialog_final_WEB.pdf. |
| 20 | 李更丰, 邱爱慈, 黄格超, 等. 电力系统应对极端事件的新挑战与未来研究展望[J]. 智慧电力, 2019, 47 (8): 1- 11. |
| LI Gengfeng, QIU Aici, HUANG Gechao, et al. New challenges and future research prospects in power system against to extreme events[J]. Smart Power, 2019, 47 (8): 1- 11. | |
| 21 | 王佐. 基于大规模新能源接入的电网规划风险预警系统研究[J]. 能源与环保, 2022, 44 (12): 203- 208. |
| WANG Zuo. Research on risk early warning system of power grid planning based on large-scale new energy access[J]. China Energy and Environmental Protection, 2022, 44 (12): 203- 208. | |
| 22 | IEA. World energy outlook 2021[EB/OL]. (2021-10-01) [2023-03-15]. https://iea.blob.core.windows.net/assets/4ed140c1-c3f3-4fd9-acae-789a4e14a23c/WorldEnergyOutlook2021.pdf. |
| 23 | IEA. World energy outlook 2022[EB/OL]. (2020-11-05) [2023-03-15].https://iea.blob.core.windows.net/assets/830fe099-5530-48f2-a7c1-11f35d510983/WorldEnergyOutlook2022.pdf. |
| 24 | ERCOT. Seasonal assessment of resource adequacy for the ERCOT region [EB/OL]. (2021-10-01) [2023-03-15]. https://www.ercot.com/files/docs/2020/11/29/SARA_Winter2020-21.pdf. |
| 25 | IEA. Secure energy transitions in the power sector[EB/OL]. (2021-04-07) [2023-05-19]. https://iea.blob.core.windows.net/assets/ed98d01e-dbe7-47c6-897e-feb27877bd59/Secure_energy_transitions_in_the_power_sector.pdf. |
| 26 | BMWI. Secure energy transitions in the power sector[EB/OL]. (2019-11-07) [2023-02-21]. https://www.bundesnetzagentur.de/SharedDocs/Downloads/EN/Areas/ElectricityGas/CollectionCompanySpecificData/Monitoring/MonitoringReport2019.pdf. |
| 27 | BRH. Special report on climate change governance in Germany[EB/OL]. (2022-3-24) [2022-04-03]. https://www.bundesrechnungshof.de/SharedDocs/Downloads/EN/Berichte/climate_chance_governance_volltext.pdf. |
| 28 | BNetzA. Anhang zum Netzentwicklungsplan strom 2035, version 2021[EB/OL]. (2022-2-17) [2022-09-05]. https://www.netzentwicklungsplan.de/archiv/netzentwicklungsplan-2035-2021. |
| 29 | 倪宇凡, 郑漳华, 冯利民, 等. 近年来国外严重停电事故对我国构建新型电力系统的启示[J]. 电器与能效管理技术, 2023, (5): 1- 8. |
| NI Yufan, ZHENG Zhanghua, FENG Limin, et al. Power outages abroad in recent years and lessons to build new power system in China[J]. Electrical & Energy Management Technology, 2023, (5): 1- 8. | |
| 30 | 胡秦然, 丁昊晖, 陈心宜, 等. 美国加州2020年轮流停电事故分析及其对中国电网的启示[J]. 电力系统自动化, 2020, 44 (24): 11- 18. |
| HU Qinran, DING Haohui, CHEN Xinyi, et al. Analysis on rotating power outage in California, USA in 2020 and its enlightenment to power grid of China[J]. Automation of Electric Power Systems, 2020, 44 (24): 11- 18. | |
| 31 |
KANEKO N, FUJIMOTO Y, HAYASHI Y. Sensitivity analysis of factors relevant to extreme imbalance between procurement plans and actual demand: case study of the Japanese electricity market[J]. Applied Energy, 2022, 313, 118616.
DOI |
| 32 | 袁玉湘, 赵守和. 日本分布式可再生能源并网应对策略[J]. 供用电, 2018, 35 (9): 62- 68. |
| YUAN Yuxiang, ZHAO Shouhe. Japan's countermeasures for distributed renewable energy generation parallel in the power grid[J]. Distribution & Utilization, 2018, 35 (9): 62- 68. |
| [1] | 张宸宇, 喻建瑜, 史明明, 刘瑞煌. 基于构网型储能的新能源微电网电压动态控制性能分析与优化[J]. 中国电力, 2025, 58(9): 115-123. |
| [2] | 周勤勇, 郝绍煦, 董武, 张立波, 张健, 贺海磊, 赵蕾蕾. “十五五”电网规划安全稳定分析关键问题[J]. 中国电力, 2025, 58(9): 138-147. |
| [3] | 吴问足, 王旭辉, 卢苑, 陈婉, 田石金, 陈娴. 基于分形理论的电力现货市场出清电价预测方法[J]. 中国电力, 2025, 58(9): 183-193. |
| [4] | 张楠, 郭庆雷, 杜哲, 王栋, 张岩, 赵靓, 蒋宇. 面向分布式新能源聚合交易的可信合约化交易模型[J]. 中国电力, 2025, 58(9): 205-218. |
| [5] | 王学军, 方水平, 池光湧. 考虑密集通道的多机电力系统暂态稳定性评估方法[J]. 中国电力, 2025, 58(8): 139-146. |
| [6] | 张博航, 戚军, 谢路耀, 张有兵, 张博扬. 考虑需求侧响应的互联电力系统分布式模型预测频率控制[J]. 中国电力, 2025, 58(7): 105-114. |
| [7] | 谭玲玲, 张文龙, 康志豪, 叶平峰, 高业豪, 张玉敏. 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. |
| [8] | 赵琳, 郭尚民, 商文颖, 董健, 王炜. 基于FDOA的可再生能源系统配置优化[J]. 中国电力, 2025, 58(7): 168-176. |
| [9] | 叶小宁, 王彩霞, 时智勇, 步雨洛, 杨超, 吴思. 国外高比例新能源消纳分析及对中国新能源可持续发展的建议[J]. 中国电力, 2025, 58(6): 137-144. |
| [10] | 秦昆, 渠志江, 韩建伟, 许涛, 高峰, 迟晓莉. 基于可调虚拟阻抗的“柔-储-充”装置电池优化运行策略[J]. 中国电力, 2025, 58(6): 145-155. |
| [11] | 王艳阳, 李建朝, 刘景青, 唐程, 王剑涛, 卢锦玲, 任惠. 电碳耦合机制下多元主体综合成本分析[J]. 中国电力, 2025, 58(6): 180-189. |
| [12] | 胡常胜, 摆志俊, 张章, 李建康, 沈子洋. 计及静态电压稳定裕度的电制氢容量和布点规划研究[J]. 中国电力, 2025, 58(5): 91-101. |
| [13] | 叶希, 黄格超, 王曦, 王彦沣, 朱童, 何川, 张瑜祺. 基于信息间隙决策理论的受端电网电压稳定多源协同优化调度[J]. 中国电力, 2025, 58(5): 121-136. |
| [14] | 张睿骁, 梁利, 王定美. 新能源场站快速频率响应分析与高效测试装置设计[J]. 中国电力, 2025, 58(5): 144-151. |
| [15] | 李健, 张钧, 韩新阳, 靳晓凌. 新型电力系统形态量化推演方法的总体框架与功能设计[J]. 中国电力, 2025, 58(3): 1-7, 97. |
| 阅读次数 | ||||||
|
全文 |
|
|||||
|
摘要 |
|
|||||


AI小编