中国电力 ›› 2026, Vol. 59 ›› Issue (5): 86-96.DOI: 10.11930/j.issn.1004-9649.202512012
• 支撑新型城市电网的虚拟电厂电力市场机制及运行关键技术 • 上一篇 下一篇
收稿日期:2025-12-03
修回日期:2026-04-17
发布日期:2026-05-15
出版日期:2026-05-28
作者简介:基金资助:
LI Na1(
), ZHANG Qiang2(
), HAO Yi1, WU Guannan3(
)
Received:2025-12-03
Revised:2026-04-17
Online:2026-05-15
Published:2026-05-28
Supported by:摘要:
针对电碳耦合环境下虚拟电厂(virtual power plant,VPP)与配电网协同优化面临的高维非线性、隐私保护及计算效率难题,提出一种基于上镜图理论的分布式协同运行模型。首先,构建涵盖新能源机组与碳捕集系统的电碳耦合市场框架及多元分布式能源模型;其次,建立双层数学模型,上层旨在实现虚拟电厂电碳市场综合效益最大化,下层通过优化购电与碳配额成本实现系统成本最小化;最后,利用上镜图理论通过函数转化与等效投影建模,将原问题转化为高效的分布式求解形式,在保障各主体隐私的同时突破非线性约束瓶颈。仿真结果表明,在IEEE 33节点系统中,相较于传统的双层模型求解,总运行收益提升3.04%,与此同时,所提方法不仅提高了计算效率,还有效保护了各主体的隐私。
李娜, 张强, 郝艺, 吴冠男. 电碳耦合市场下虚拟电厂与配电网协同优化运行模型[J]. 中国电力, 2026, 59(5): 86-96.
LI Na, ZHANG Qiang, HAO Yi, WU Guannan. Coordinated optimization operation model of virtual power plant and distribution network in the electricity-carbon coupled market[J]. Electric Power, 2026, 59(5): 86-96.
| 类别 | 燃煤机组 | 燃气机组 | 燃气锅炉 | ||||
| 电 | 热 | 电 | 热 | 热 | |||
| 碳配额[ | |||||||
| 碳排放[ | |||||||
表 1 碳核算因子参数
Table 1 Carbon accounting factor parameters 单位:kg/(kW·h)
| 类别 | 燃煤机组 | 燃气机组 | 燃气锅炉 | ||||
| 电 | 热 | 电 | 热 | 热 | |||
| 碳配额[ | |||||||
| 碳排放[ | |||||||
| 场景 | 电市场 效益/元 | 碳市场 效益/元 | 设备运行 成本/元 | VPP总效 益/元 | 碳交易 量/t |
| 1 | — | — | |||
| 2 | 7.167 |
表 2 基础场景下VPP运行效益对比
Table 2 Comparison of VPP operation benefits under the basic scenario
| 场景 | 电市场 效益/元 | 碳市场 效益/元 | 设备运行 成本/元 | VPP总效 益/元 | 碳交易 量/t |
| 1 | — | — | |||
| 2 | 7.167 |
| 场景 | 电市场 效益/元 | 碳市场 效益/元 | 设备运行 成本/元 | VPP总效 益/元 | 碳交易 量/t |
| 2 | 7.167 | ||||
| 3 | 7.416 |
表 3 对照场景下VPP运行效益对比
Table 3 Comparison of VPP operation benefits under the control scenario
| 场景 | 电市场 效益/元 | 碳市场 效益/元 | 设备运行 成本/元 | VPP总效 益/元 | 碳交易 量/t |
| 2 | 7.167 | ||||
| 3 | 7.416 |
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