Page 149 - 2025年第56卷第11期
P. 149
(4)相比传统优化方法,依据本方法得到的汛前蓄能调度方案能够在较小损失年末蓄能情况下,提升
发电效益,减少风险。多年期模拟结果表明,系统发电量增加 5.8 亿 kWh、风光弃电减少 14.8%、枯水
期缺电损失减少 86.6%、汛期弃水减少 23.2%。
参 考 文 献:
/
.
[ 1 ] 国家能源局 . 水风光一体化开发探新路[EB/OL].(2023-06-02)[2024-06-25] https:/www. nea. gov.cn/2023-06/
02/c_1310724323.htm.
[ 2 ] 康雍喜,赵志鹏,程春田 . 考虑水流滞时的清洁能源基地水电短期灵活性量化方法[J] 水利学报,2024,55
.
(12):1496-1507.
[ 3 ] 程春田 . 碳中和下的水电角色重塑及其关键问题[J] 电力系统自动化,2021,45(16):29-36.
.
[ 4 ] 张俊涛,程春田,于申,等 . 水电支撑新型电力系统灵活性研究进展、挑战与展望[J] 中国电机工程学报,
.
2024,44(10):3862-3885.
[ 5 ] 张振东,唐海华,覃晖,等 . 风光水互补系统发电效益-稳定性多目标优化调度[J] 水利学报,2022,53
.
(9):1073-1082.
[ 6 ] 朱燕梅,陈仕军,马光文,等 . 计及发电量和出力波动的水光互补短期调度[J] 电工技术学报,2020,35
.
(13):2769-2779.
[ 7 ] LU N, WANG G, SU C, et al. Medium-and long-term interval optimal scheduling of cascade hydropower-
photovoltaic complementary systems considering multiple uncertainties[J] Applied Energy,2024,353:122085.
.
[ 8 ] LI F F,WU Z G,WEI J H,et al. Long-term equilibrium operational plan for hydro-PV hybrid power system con‐
sidering benefits,stability,and tolerance[J] Journal of Water Resources Planning and Management,2020,146
.
(8):05020012.
[ 9 ] 段佳南,谢俊,冯丽娜,等 . 基于合作博弈论的风-光-水-氢多主体能源系统增益分配策略[J] 电网技术,
.
2022,46(5):1703-1712.
[ 10] LI H,LIU P,GUO S,et al. Long-term complementary operation of a large-scale hydro-photovoltaic hybrid power
plant using explicit stochastic optimization[J] Applied Energy,2019,238:863-875.
.
[ 11] WANG J,ZHAO Z,ZHOU J,et al. Developing operating rules for a hydro-wind-solar hybrid system considering
.
peak-shaving demands[J] Applied Energy,2024,360:122762.
[ 12] OSTADRAHIMI L,MARIÑO M A,AFSHAR A. Multi-reservoir operation rules:multi-swarm PSO-based optimi‐
.
zation approach[J] Water Resources Management,2012,26:407-427.
[ 13] LI Y, MING B, HUANG Q, et al. Identifying effective operating rules for large hydro-solar-wind hybrid systems
.
based on an implicit stochastic optimization framework[J] Energy,2022,245:123260.
[ 14] LIN M,SHEN J,CHENG C,et al. Long-term multi-objective optimal scheduling for large cascaded hydro-wind-
photovoltaic complementary systems considering short-term peak-shaving demands[J] Energy Conversion and Man‐
.
agement,2024,301:118063.
[ 15] 明波,李研,刘攀,等. 嵌套短期弃电风险的水光互补中长期优化调度研究[J] 水利学报,2021,52(6):712-722.
.
[ 16] 王进,赵志鹏,程春田,等 . 耦合出力破坏深度与弃电准则的梯级水风光互补调度规则研究[J] 水利学报,
.
2023,54(12):1415-1429.
[ 17] 赵志鹏,于志辉,程春田,等 . 水风光综合基地多风险量化及长期多目标协调优化调度方法[J] 电力系统自
.
动化,2024,48(22):118-130.
[ 18] 曹瑞,申建建,程春田,等 . 梯级水库群汛前消落控制多目标优化方法[J] 中国电机工程学报,2019,39
.
(12):3465-3475.
[ 19] LABADIEJW. Optimal operation of multireservoir systems:State-of-the-art review[J] Journal of Water Resources
.
Planning and Management,2004,130(2):93-111.
[ 20] 申建建,王月,程春田,等 . 水风光多能互补发电调度问题研究现状及展望[J] 中国电机工程学报,2022,
.
42(11):3871-3885.
[ 21] 牟长兴,张俊涛,程春田,等 . 考虑时空相关性的流域水风光多能互补系统高维不确定性场景生成方法[J] .
— 1540 —

