中国电力 ›› 2025, Vol. 58 ›› Issue (10): 216-224.DOI: 10.11930/j.issn.1004-9649.202504079
收稿日期:2025-04-27
发布日期:2025-10-23
出版日期:2025-10-28
作者简介:基金资助:
WANG Jingliang(
), XU Zhe(
), CHEN Xiaodong, MOU Chunfeng
Received:2025-04-27
Online:2025-10-23
Published:2025-10-28
Supported by:摘要:
为解决区域电力市场联合出清收益如何在各省之间公平分配的问题,提出一种计及能量-备用联合出清的区域电力市场增益分配机制。首先,构建了以全网总运营成本最小化为目标的区域电力市场联合出清模型,统筹优化电能生产、备用容量及跨省输电成本;其次,基于Shapley值理论设计了增益分配方法,量化各省在联合运行中的边际贡献,并进一步细化至发电商与用户层面,确保利益分配的公平性;最后,通过三区域互联系统进行仿真验证。结果表明,所提联合出清机制较传统独立出清模式可降低系统总成本,算例中联合出清成本降低了约3%,减少切负荷量约80%,研究结果为区域电力市场协同运行与收益分配提供了理论依据。
王景亮, 许喆, 陈晓东, 牟春风. 计及能量-备用联合出清的区域电力市场增益分配机制[J]. 中国电力, 2025, 58(10): 216-224.
WANG Jingliang, XU Zhe, CHEN Xiaodong, MOU Chunfeng. Gain Allocation Mechanism for Regional Electricity Markets Considering Energy-Reserve Joint Clearing[J]. Electric Power, 2025, 58(10): 216-224.
| 省 份 | 机 组 | 发电成本 系数/ (美元·MW–1) | 爬坡速率/ (MW·h–1) | 最小出力/ MW | 最大出力/ MW | 正、负备用 成本系数/ (美元·MW–1) | ||||||
| A | G1 | 38 | 100 | 50 | 200 | 13 | ||||||
| G2 | 35 | 160 | 60 | 300 | 13 | |||||||
| G3 | 40 | 90 | 40 | 150 | 20 | |||||||
| B | G4 | 36 | 130 | 60 | 200 | 14 | ||||||
| G5 | 37 | 100 | 50 | 200 | 14 | |||||||
| G6 | 42 | 80 | 20 | 100 | 20 | |||||||
| C | G7 | 40 | 150 | 50 | 250 | 17 | ||||||
| G8 | 41 | 80 | 40 | 150 | 19 | |||||||
| G9 | 47 | 70 | 25 | 100 | 23.5 |
表 1 机组参数
Table 1 Generator parameters
| 省 份 | 机 组 | 发电成本 系数/ (美元·MW–1) | 爬坡速率/ (MW·h–1) | 最小出力/ MW | 最大出力/ MW | 正、负备用 成本系数/ (美元·MW–1) | ||||||
| A | G1 | 38 | 100 | 50 | 200 | 13 | ||||||
| G2 | 35 | 160 | 60 | 300 | 13 | |||||||
| G3 | 40 | 90 | 40 | 150 | 20 | |||||||
| B | G4 | 36 | 130 | 60 | 200 | 14 | ||||||
| G5 | 37 | 100 | 50 | 200 | 14 | |||||||
| G6 | 42 | 80 | 20 | 100 | 20 | |||||||
| C | G7 | 40 | 150 | 50 | 250 | 17 | ||||||
| G8 | 41 | 80 | 40 | 150 | 19 | |||||||
| G9 | 47 | 70 | 25 | 100 | 23.5 |
| 场景 | 切负荷量 | |||||||
| A省 | B省 | C省 | 总计 | |||||
| 1 | 0 | 146.20 | 39.20 | 185.40 | ||||
| 2 | 0 | 426.30 | 518.70 | 945.00 | ||||
| 3 | 0 | 109.45 | 75.95 | 185.40 | ||||
| 4 | 0 | 160.40 | 125.20 | 285.60 | ||||
表 2 各场景切负荷量及其成本
Table 2 Load shedding and associated costs under different scenarios 单位:(MW·h)
| 场景 | 切负荷量 | |||||||
| A省 | B省 | C省 | 总计 | |||||
| 1 | 0 | 146.20 | 39.20 | 185.40 | ||||
| 2 | 0 | 426.30 | 518.70 | 945.00 | ||||
| 3 | 0 | 109.45 | 75.95 | 185.40 | ||||
| 4 | 0 | 160.40 | 125.20 | 285.60 | ||||
| 场景 | 运行方式 | 出清成本/美元 | 总成本/美元 | |||
| 1 | ABC联合 | 1 158 748 | 1 158 748 | |||
| 2 | A独立出清 | 335 771 | 1 193 682 | |||
| B独立出清 | 399 676 | |||||
| C独立出清 | 458 235 | |||||
| 3 | ABC联合 | 1 161 127 | 1 161 127 | |||
| 4 | ABC联合 | 1 173 238 | 1 173 238 |
表 3 各场景下系统出清成本
Table 3 Market clearing costs under different scenarios
| 场景 | 运行方式 | 出清成本/美元 | 总成本/美元 | |||
| 1 | ABC联合 | 1 158 748 | 1 158 748 | |||
| 2 | A独立出清 | 335 771 | 1 193 682 | |||
| B独立出清 | 399 676 | |||||
| C独立出清 | 458 235 | |||||
| 3 | ABC联合 | 1 161 127 | 1 161 127 | |||
| 4 | ABC联合 | 1 173 238 | 1 173 238 |
| 出清方式 | 联盟S组成成员 | 运行成本/美元 | 增益/美元 | |||
| 独立出清 | A | 335 771 | 0 | |||
| B | 399 676 | 0 | ||||
| C | 458 235 | 0 | ||||
| 两省联合出清 | A、B | 718 079 | 17 368 | |||
| A、C | 768 898 | 25 108 | ||||
| B、C | 856 573 | 1 338 | ||||
| 三省联合出清 | A、B、C | 1 161 127 | 34 934 |
表 4 系统出清成本及其增益
Table 4 System clearing costs and associated gains
| 出清方式 | 联盟S组成成员 | 运行成本/美元 | 增益/美元 | |||
| 独立出清 | A | 335 771 | 0 | |||
| B | 399 676 | 0 | ||||
| C | 458 235 | 0 | ||||
| 两省联合出清 | A、B | 718 079 | 17 368 | |||
| A、C | 768 898 | 25 108 | ||||
| B、C | 856 573 | 1 338 | ||||
| 三省联合出清 | A、B、C | 1 161 127 | 34 934 |
| 分配方式 | 增益 | |||||
| A省 | B省 | C省 | ||||
| Shapley值法 | 18 278 | 6 393 | 10 263 | |||
| 平均分配 | 11 645 | 11 645 | 11 645 | |||
表 5 各省增益分配
Table 5 Provincial gain allocation 单位:美元
| 分配方式 | 增益 | |||||
| A省 | B省 | C省 | ||||
| Shapley值法 | 18 278 | 6 393 | 10 263 | |||
| 平均分配 | 11 645 | 11 645 | 11 645 | |||
| 场景 | 运行方式 | 出清成本/美元 | 总成本/美元 | |||
| 1 | A、B、C联合 | 7 361 579 | 7 361 579 | |||
| 2 | A独立出清 | 2 501 391 | 8 625 487 | |||
| B独立出清 | 2 846 411 | |||||
| C独立出清 | 3 277 685 | |||||
| 3 | A、B、C联合 | 8 244 379 | 8 244 379 | |||
| 4 | A、B、C联合 | 8 426 487 | 8 426 487 |
表 6 各场景下系统出清成本
Table 6 System clearing costs under different scenarios
| 场景 | 运行方式 | 出清成本/美元 | 总成本/美元 | |||
| 1 | A、B、C联合 | 7 361 579 | 7 361 579 | |||
| 2 | A独立出清 | 2 501 391 | 8 625 487 | |||
| B独立出清 | 2 846 411 | |||||
| C独立出清 | 3 277 685 | |||||
| 3 | A、B、C联合 | 8 244 379 | 8 244 379 | |||
| 4 | A、B、C联合 | 8 426 487 | 8 426 487 |
| 省份 | 所获增益/美元 | |
| A | 631 954 | |
| B | 252 782 | |
| C | 379 172 |
表 7 各省增益分配结果
Table 7 Provincial benefit allocation results
| 省份 | 所获增益/美元 | |
| A | 631 954 | |
| B | 252 782 | |
| C | 379 172 |
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