发电技术 ›› 2024, Vol. 45 ›› Issue (5): 975-982.DOI: 10.12096/j.2096-4528.pgt.23112
• 智能电网 • 上一篇
吴任博1,2, 黄奕俊1
收稿日期:2023-09-14
修回日期:2023-12-25
出版日期:2024-10-31
发布日期:2024-10-29
作者简介:基金资助:Renbo WU1,2, Yijun HUANG1
Received:2023-09-14
Revised:2023-12-25
Published:2024-10-31
Online:2024-10-29
Supported by:摘要:
目的 随着可再生能源电网占比逐年增加,电网的波动性和不确定性显著提升,给配电网的安全运行带来挑战。针对高比例新能源电网分布式配网重构问题,提出一种在线滚动优化框架方法。 方法 通过分布式共识协议获取网络拓扑和节点运行信息,在N-1和N-2线路故障状态下自动重构,实现配电网无额外外部触发信号情况下自动恢复正常运行,保证电网经济运行。同时采用滚动优化方法处理高比例可再生能源所导致的电网波动问题,并利用生成对抗网络(generative adversarial network,GAN)技术生成新数据,结合历史数据实现电网运行数据高精度预测。 结果 所提方法在正常状态、单点故障和两点故障3种情况下,均能实现电网的自动经济运行优化和自愈修复。 结论 与鲁棒规划和随机规划等方法相比,所提出方法可提升电网预测精度。
中图分类号:
吴任博, 黄奕俊. 高比例可再生能源接入下含自愈性能的分布式配电网重构策略研究[J]. 发电技术, 2024, 45(5): 975-982.
Renbo WU, Yijun HUANG. Research on Reconfiguration Strategy of Distributed Distribution Network With Self-Healing Performance Under High-Proportion Renewable Energy Access[J]. Power Generation Technology, 2024, 45(5): 975-982.
| 参数 | 数值 | 参数 | 数值 |
|---|---|---|---|
| CG/(美元/MW) | 100 | 0.95, 1.05 | |
| CM/(美元/MW) | 25 | 0, 2 | |
| CLoss/(美元/MW) | 130 | 0, 1 | |
| Cλ/(美元/MW) | 2 000 | 2×10-5 |
表1 与测试系统相关的参数
Tab. 1 Parameters related to the testing system
| 参数 | 数值 | 参数 | 数值 |
|---|---|---|---|
| CG/(美元/MW) | 100 | 0.95, 1.05 | |
| CM/(美元/MW) | 25 | 0, 2 | |
| CLoss/(美元/MW) | 130 | 0, 1 | |
| Cλ/(美元/MW) | 2 000 | 2×10-5 |
| 1 | 李峰,孙波,王轩,等 .基于Petri网的含分布式光伏配电网故障诊断方法[J].自动化技术与应用,2020(8):92-96. doi:10.1109/icicas51530.2020.00048 |
| LI F, SUN B, WANG X,et al .Fault diagnosis method for distributed photovoltaic distribution network based on petri nets[J].Techniques of Automation and Applications,2020(8):92-96. doi:10.1109/icicas51530.2020.00048 | |
| 2 | 刘洪波,刘珅诚,盖雪扬,等 .高比例新能源接入的主动配电网规划综述[J].发电技术,2024,45(1):151-161. doi:10.12096/j.2096-4528.pgt.22106 |
| LIU H B, LIU S C, GAI X Y,et al .Overview of active distribution network planning with high proportion of new energy access[J].Power Generation Technology,2024,45(1):151-161. doi:10.12096/j.2096-4528.pgt.22106 | |
| 3 | 刘建伟,李学斌,刘晓鸥 .有源配电网中分布式电源接入与储能配置[J].发电技术,2022,43(3):476-484. doi:10.12096/j.2096-4528.pgt.21068 |
| LIU J W, LI X B, LIU X O .Distributed power access and energy storage configuration in active distribution network[J].Power Generation Technology,2022,43(3):476-484. doi:10.12096/j.2096-4528.pgt.21068 | |
| 4 | 王艺,王宾,刘阳,等 .计及分布式电源动态行为的配电网重构优化策略[J].电力系统保护与控制,2020,48(24):164-172. |
| WANG Y, WANG B, LIU Y,et al .Optimization strategy for distribution network reconfiguration considering the dynamic behavior of DGs[J].Power System Protection and Control,2020,48(24):164-172. | |
| 5 | 周鹏 .含分布式电源并网特性的配电网重构策略[J].电测与仪表,2019,56(15):34-40. |
| ZHOU P .Reconfiguration strategy of distribution network considering characteristics of grid-connected distributed generation[J].Electrical Measurement & Instrumentation,2019,56(15):34-40. | |
| 6 | WANG H J, PAN J S, NGUYEN T T,et al .Distribution network reconfiguration with distributed generation based on parallel slime mould algorithm[J].Energy,2022,244:123011. doi:10.1016/j.energy.2021.123011 |
| 7 | 吉兴全,连承宇,张玉敏,等 .基于智能软开关的三相不平衡配电网动态重构策略[J].智慧电力,2023,51(5):111-118. |
| JI X Q, LIAN C Y, ZHANG Y M,et al .Dynamic reconfiguration of three-phase unbalanced distribution networks based on SOP[J].Smart Power,2023,51(5):111-118. | |
| 8 | 张玉敏,孙鹏凯,叶平峰,等 .基于CNN的配电网快速重构方法[J].智慧电力,2022,50(11):112-118. doi:10.3969/j.issn.1673-7598.2022.11.018 |
| ZHANG Y M, SUN P K, YE P F,et al .Fast reconfiguration method of distribution network of based on convolutional neural network[J].Smart Power,2022,50(11):112-118. doi:10.3969/j.issn.1673-7598.2022.11.018 | |
| 9 | 童晓阳,张绍迅 .基于灰色关联度的配电网故障区段定位与类型识别方法[J].电力系统自动化,2019,43(4):113-118,145. |
| TONG X Y, ZHANG S X .Grey relational degree based fault section location and type recognition method for distribution network[J].Automation of Electric Power Systems,2019,43(4):113-118,145. | |
| 10 | KIANMEHR E, NIKKHAH S, VAHIDINASAB V,et al .A resilience-based architecture for joint distributed energy resources allocation and hourly network reconfiguration[J].IEEE Transactions on Industrial Informatics,2019,15(10):5444-5455. doi:10.1109/tii.2019.2901538 |
| 11 | ARULPRAKASAM S, MUTHUSAMY S .Reconfiguration of distribution networks using rain-fall optimization with non-dominated sorting[J].Applied Soft Computing,2022,115:108200. doi:10.1016/j.asoc.2021.108200 |
| 12 | 孙元博,张承学,胡志坚 .地区配电网重构与故障恢复问题[J].电网技术,2014,38(12):3366-3371. |
| SUN Y B, ZHANG C X, HU Z J .Reconfiguration and fault restoration of regional distribution networks[J].Power System Technology,2014,38(12):3366-3371. | |
| 13 | 王晓,何悦星,李立波,等 .分布式光伏电源接入的配电网馈线重构技术[J].自动化技术与应用,2019,38(7):94-99. |
| WANG X, HE Y X, LI L B,et al .Distribution network reconfiguration technology based on distributed photovoltaic power supply access[J].Techniques of Automation and Applications,2019,38(7):94-99. | |
| 14 | FU Y Y, CHIANG H D .Toward optimal multiperiod network reconfiguration for increasing the hosting capacity of distribution networks[J].IEEE Transactions on Power Delivery,2018,33(5):2294-2304. doi:10.1109/tpwrd.2018.2801332 |
| 15 | GAO H, MA W, HE S,et al .Time-segmented multi-level reconfiguration in distribution network: a novel cloud-edge collaboration framework[J].IEEE Transactions on Smart Grid,2022,13(4):3319-3322. doi:10.1109/tsg.2022.3156433 |
| 16 | ZHANG Y, QIAN T, TANG W .Buildings-to-distribution-network integration considering power transformer loading capability and distribution network reconfiguration[J].Energy,2022,244:123104. doi:10.1016/j.energy.2022.123104 |
| 17 | ARANDIAN B, HOOSHMAND R A, GHOLIPOUR E .Decreasing activity cost of a distribution system company by reconfiguration and power generation control of DGs based on shuffled frog leaping algorithm[J].International Journal of Electrical Power & Energy Systems,2014,61:48-55. doi:10.1016/j.ijepes.2014.03.001 |
| 18 | CHIDANANDAPPA R, ANANTHAPADMANABHA T, RANJITH H C .Genetic algorithm based network reconfiguration in distribution systems with multiple DGs for time varying loads[J].Procedia Technology,2015,21:460-467. doi:10.1016/j.protcy.2015.10.023 |
| 19 | SANCHES D S, LIMA T W, SANTOS A C,et al .Node-depth encoding with recombination for multi-objective evolutionary algorithm to solve loss reduction problem in large-scale distribution systems[C]//2012 IEEE Power and Energy Society General Meeting.San Diego,USA:IEEE,2012:1-8. doi:10.1109/pesgm.2012.6345043 |
| 20 | 张晋铭,欧阳森,辛曦,等 .高渗透率分布式电源影响下配电网极限线损计算方法[J].广东电力,2023,36(4):21-31. |
| ZHANG J M, OUYANG S, XIN X,et al .Calculation method of limit line loss of distribution network under influence of high-penetration distributed generation[J].Guangdong Electric Power,2023,36(4):21-31. | |
| 21 | 刘志勇,曾庆彬,吴晗 .高比例新能源接入的农村配电网网架多目标协同规划方法[J].广东电力,2023,36(9):34-42. |
| LIU Z Y, ZENG Q B, WU H .Multi-objective collaborative planning method for rural distribution network grid with high proportion of new energy[J].Guangdong Electric Power,2023,36(9):34-42. | |
| 22 | 杨婧颖,王武林,张明敏,等 .考虑分布式光伏和储能参与的配电网电压分层控制方法[J].电力科学与技术学报,2023,38(5):111-120. |
| YANG J Y, WANG W L, ZHANG M M,et al .Voltage hierarchical control method of distribution network considering distributed photovoltaic and energy storage[J].Journal of Electric Power Science and Technology,2023,38(5):111-120. | |
| 23 | LI L L, XIONG J L, TSENG M L,et al .Using multi-objective sparrow search algorithm to establish active distribution network dynamic reconfiguration integrated optimization[J].Expert Systems with Applications,2022,193:116445. doi:10.1016/j.eswa.2021.116445 |
| 24 | JAFAR-NOWDEH A, BABANEZHAD M, ARABI-NOWDEH S,et al .Meta-heuristic matrix moth-flame algorithm for optimal reconfiguration of distribution networks and placement of solar and wind renewable sources considering reliability[J].Environmental Technology & Innovation,2020,20:101118. doi:10.1016/j.eti.2020.101118 |
| 25 | ZHAO G, LIU J, LIU S,et al .Control strategy based on the flexible multi-state switch for maximum consumption of distributed generations in distribution network[J].Applied Sciences,2019,9(14):2871. doi:10.3390/app9142871 |
| 26 | AJOULABADI A, RAVADANEGH S N, BEHNAM MOHAMMADI-IVATLOO .Flexible scheduling of reconfigurable microgrid-based distribution networks considering demand response program[J].Energy,2020,196:117024. doi:10.1016/j.energy.2020.117024 |
| 27 | ISLAM M R, LU H, HOSSAIN M J,et al .Mitigating unbalance using distributed network reconfiguration techniques in distributed power generation grids with services for electric vehicles:a review[J].Journal of Cleaner Production,2019,239:117932. doi:10.1016/j.jclepro.2019.117932 |
| 28 | BARAN M E, WU F F .Network reconfiguration in distribution systems for loss reduction and load balancing[J].IEEE Transactions on Power delivery,1989,4(2):1401-1407. doi:10.1109/61.25627 |
| 29 | FARIVAR M, LOW S H .Branch flow model:relaxations and convexification (parts I,II)[EB/OL].(2012-12-02)[2023-08-16].. doi:10.1023/a:1010650624155 |
| 65v4. doi:10.1023/a:1010650624155 | |
| 30 | XU X, YAN Z, SHAHIDEHPOUR M,et al .Maximum loadability of islanded microgrids with renewable energy generation[J].IEEE Transactions on Smart Grid,2018,10(5):4696-4705. doi:10.1109/tsg.2018.2848958 |
| 31 | 朱彦名,徐潇源,严正,等 .面向电力物联网的含可再生能源配电网运行展望[J].电力系统保护与控制,2022,50(2):176-187. |
| ZHU Y M, XU X Y, YAN Z,et al .Prospect of renewable energy integrated distribution network operation in the power Internet of Things[J].Power System Protection and Control,2022,50(2):176-187. | |
| 32 | PFENNINGER S, STAFFELL I .Long-term patterns of European PV output using 30 years of validated hourly reanalysis and satellite data[J].Energy,2016,114:1251-1265. doi:10.1016/j.energy.2016.08.060 |
| 33 | LEI S, CHEN C, SONG Y,et al .Radiality constraints for resilient reconfiguration of distribution systems:formulation and application to microgrid formation[EB/OL].(2019-08-02)[2023-08-16].. doi:10.1109/pesgm46819.2021.9637862 |
| [1] | 王伟杰, 曾鑫洁, 徐远途, 李书仪, 阮灿华, 童宁, 武小梅. 基于正序突变量相轨迹辨识的可再生能源配电网电流保护[J]. 发电技术, 2024, 45(4): 753-764. |
| [2] | 孙健浩, 初壮. 考虑碳交易和无功补偿的分布式电源优化配置[J]. 发电技术, 2024, 45(1): 142-150. |
| [3] | 刘洪波, 刘珅诚, 盖雪扬, 刘永发, 阎禹同. 高比例新能源接入的主动配电网规划综述[J]. 发电技术, 2024, 45(1): 151-161. |
| [4] | 彭道刚, 税纪钧, 王丹豪, 赵慧荣. “双碳”背景下虚拟电厂研究综述[J]. 发电技术, 2023, 44(5): 602-615. |
| [5] | 张宁, 朱昊, 杨凌霄, 胡存刚. 考虑可再生能源消纳的多能互补虚拟电厂优化调度策略[J]. 发电技术, 2023, 44(5): 625-633. |
| [6] | 兰宇, 龙妍, 张哲豪, 阮金港. 可再生能源制氢跨省供应的技术经济可行性研究[J]. 发电技术, 2023, 44(4): 473-483. |
| [7] | 许洪华, 邵桂萍, 鄂春良, 郭金东. 我国未来能源系统及能源转型现实路径研究[J]. 发电技术, 2023, 44(4): 484-491. |
| [8] | 杜将武, 唐小强, 罗志伟, 刘敦楠, 陈积旭, 徐尔丰, 毕圣. 面向综合能源园区的丰枯电价定价方法[J]. 发电技术, 2023, 44(2): 261-269. |
| [9] | 肖洋, 李志强, 程林, 汤磊, 夏潮, 梁英, 宋锐, 王东阳, 李贺文. 西北电网集中式调相机AVC综合协调控制策略[J]. 发电技术, 2023, 44(2): 270-279. |
| [10] | 魏少鑫, 金鹰, 王瑾, 杨周飞, 崔超婕, 骞伟中. 电池型电容器技术发展趋势展望[J]. 发电技术, 2022, 43(5): 748-759. |
| [11] | 刘建伟, 李学斌, 刘晓鸥. 有源配电网中分布式电源接入与储能配置[J]. 发电技术, 2022, 43(3): 476-484. |
| [12] | 徐彬, 薛帅, 高厚磊, 彭放. 海上风电场及其关键技术发展现状与趋势[J]. 发电技术, 2022, 43(2): 227-235. |
| [13] | 李雪临, 袁凌. 海上风电制氢技术发展现状与建议[J]. 发电技术, 2022, 43(2): 198-206. |
| [14] | 王丹丹, 李亚楼, 李芳, 孙璐. 碳中和背景下高温固体氧化物电解制氢的过程建模与热力学分析[J]. 发电技术, 2021, 42(5): 554-560. |
| [15] | 宣文博, 李慧, 刘忠义, 孙业广, 侯恺. 一种基于虚拟电厂技术的城市可再生能源消纳能力提升方法[J]. 发电技术, 2021, 42(3): 289-297. |
| 阅读次数 | ||||||
|
全文 |
|
|||||
|
摘要 |
|
|||||