华北电力大学电气与电子工程学院
纸质出版:2026
移动端阅览
[1]林俐,丁文敏,唐传伟,等.计及储能调频能力的高比例新能源电力系统优化调度[J].华北电力大学学报(自然科学版),2026,53(01):1-13.
林俐, 丁文敏, 唐传伟, et al. 计及储能调频能力的高比例新能源电力系统优化调度[J]. 2026, 53(1): 1-13.
随着可再生能源大量并网,其波动性、间歇性给电网调峰调频带来了困难和挑战,而储能作为优质的调节资源可以缓解日益增长的调峰与频率响应压力。据此,本文分析多源联合系统的惯性响应和一次调频机理,研究电化学储能的频率响应能力,确定其非调峰阶段的基本调频容量;以最大化利用储能为目标,对电化学储能荷电状态进行分区,提出一种基于SoC的储能调频容量增量划分方法。以净负荷波动最小为目标确定储能调频的时间区间、容量;以系统运行成本最低最大消纳新能源为目标构建计及储能调频能力的高比例新能源电力系统双层优化调度模型;最后,选取改进IEEE-39节点算例系统进行分析,验证所提模型的有效性和可行性。
With a large number of renewable energy sources connected to the grid
their volatility and intermittency have posed significant challenges to peak load and frequency modulation. Energy storage
as a high-quality regulation resource
can alleviate the increasing pressure on peak load and frequency modulation. Accordingly
this paper analyzes the inertial response and primary frequency modulation mechanism of the multi-source joint system
studies the frequency response capability of the electrochemical energy storage
and determines its base frequency modulation capacity during the non-peaking phase. With the objective of maximizing the utilization of energy storage
the state of charge of electrochemical energy storage is partitioned
and a SoC-based incremental division method of energy storage frequency modulation capacity is proposed. The time interval and capacity of energy storage frequency modulation are determined with the goal of minimizing net load fluctuation. A wind-solar-thermal-storage multi-source joint bi-level optimal scheduling model considering energy storage and frequency modulation capability is constructed
aiming to minimize the system operating costs and maximize the renewable energy accommodation. Finally
the improved IEEE-39 bus is selected for case analysis
and the results verify the effectiveness and feasibility of the proposed model.
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