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基于分布鲁棒机会约束的钢铁工业微电网在配电市场中含储能的能量管理
Distributionally robust chance-constrained energy management of steel industrial microgrid with energy storage in distribution market
| 作者 | Linbo Fu · Houhe Chen · Rufeng Zhang · Tao Jiang · Guoqing Li · Rui Qu |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 400 卷 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 工商业光伏 微电网 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | A time series model of the steel production process based on the device states is constructed in energy management of SIMG. |
语言:
中文摘要
摘要 高耗能钢铁工业微电网(SIMG)中分布式光伏出力的不确定性可能影响SIMG的能量管理策略,甚至增加其在配电市场中的运行风险。针对SIMG中分布式光伏出力的不确定性,本文提出了一种基于分布鲁棒机会约束(DRCC)的配电市场环境下SIMG能量管理方法,以优化钢铁工业生产过程。首先,根据SIMG中能量流与信息流的形式,提出了参与配电市场出清的交易模式;在SIMG能量管理中引入了钢铁生产过程的时间序列模型,并进一步构建了配电市场环境下的双层能量优化管理模型。随后,采用DRCC方法处理分布式光伏出力的不确定性,基于矩信息建立了SIMG能量管理的分布鲁棒优化模型。引入条件风险价值(CVaR)理论与对偶理论,将分布鲁棒优化模型转化为二阶锥(SOC)规划形式。最后,通过引入原始-对偶对应条件和线性化方法,将双层模型转化为混合整数二阶锥规划(MISOCP)问题。结果表明,所提出的方法能够兼顾能量管理的风险性与经济性。
English Abstract
Abstract The uncertainty of distributed PV output in the high-energy-consuming steel industrial microgrid (SIMG) can have an impact on the energy management strategy of the SIMG and even increase the operational risk in the distribution market. Considering the uncertainty of distributed PV in SIMG, this paper proposes an energy management method for SIMG under distribution market based on the distributionally robust chance-constraint (DRCC), to optimal the processes of steel industrial production. Firstly, according to the form of energy flow and information flow of SIMG, the transactional mode of participating in distribution market-clearing is proposed. A time series model of the steel production process is included in the energy management for SIMG, and the bi-level energy optimization management model under the environment of distribution market is further constructed. Then, DRCC method is applied to deal with the uncertainty of distributed PV output and the distributionally robust optimization model of energy management for SIMG based on moment information is constructed. Conditional value-at-risk (CVaR) theory and duality theory are introduced to transform the distributionally robust optimization model into a second-order cone (SOC) programming form. Finally, the primal-dual counterpart condition and the linearization method are introduced to transform the bi-level model into a mixed integer SOC programming (MISOCP) problem. The results show that the proposed method can take into account the risk and economy of energy management.
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SunView 深度解读
该分布鲁棒机会约束优化方法对阳光电源钢铁工业微网解决方案具有重要价值。针对高载能工业场景,可结合ST系列储能变流器与PowerTitan系统,通过CVaR风险控制策略优化光储协同调度。建议在iSolarCloud平台集成该分布鲁棒算法,处理工商业光伏出力不确定性,提升SG系列逆变器在电力市场环境下的经济调度能力。该双层优化模型可为储能系统参与配电市场交易提供决策支持,平衡风险与收益,增强工业微网能量管理的鲁棒性与经济性。