层次控制结构下考虑风电不确定性的多区域系统多时间尺度联络线能量储备分配模型

Linyu Wang, Haiyan Jiang, Yibo Jiang
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引用次数: 0

摘要

中国部分地区集中式风电并网比例的增加,在其固有的分级控制结构下,导致了区域间能源和储备的共享需求,风电不确定性引入的不平衡功率,随着风电预测精度的提高,导致了从日前到日内的修正需求。为了解决这些问题,本文提出了一种信息集成方法,将该区域内燃料成本、火电总产出、备用容量、自有储备、减载弃风预期之间的复杂关系集成为三种不同时间尺度下的时间相关关系曲线。在此基础上,提出了一种包含两个层次控制结构、两个时间尺度调度序列和多个风电场集成区域的多时间尺度联络线能量储备分配模型。在9总线测试系统和IEEE 118总线系统中验证了该方法的有效性。结果表明,利用综合关系曲线,跨区域控制中心能够有效地在区域间分配能量和储备。该模型不仅缓解了部分地区的能源和储备短缺,而且在日前和日内时间尺度上都能高效地将其分配给更紧迫的地区。
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A Multi-time Scale Tie-line Energy and Reserve Allocation Model Considering Wind Power Uncertainty for Multi-area System in Hierarchical Control Structure
Increasing proportion of centralized wind power integrated into partial areas of China leads to requirement in sharing both energy and reserve among areas under its inherent hierarchical control structure, and the unbalance power introduced by wind power uncertainty lead to requirement of correction from day ahead to intra-day along with the improvement of wind power prediction precision. In order to address these problems, this paper develops an information integration method integrating complicated relations among fuel cost, total thermal power output, reserve capacity, owned reserve and expectations of loading shedding and wind curtailment within this area into three types of time-related relation curves in different time scale. Furthermore, a multi-time scale tie-line energy and reserve allocation model is proposed, which contains two levels in control structure, two time scales in dispatch sequence and multiple areas integrated with wind farms. The efficiency of the proposed method is tested in 9-bus test system and IEEE 118-bus system. The results show that cross-regional control centre is able to allocate both energy and reserve among areas efficiently with the integrated relation curves. The proposed model not only relieves energy and reserve shortage in partial areas but also allocates them to more urgent areas in a high effectivity manner in both day-ahead and intraday time scale.
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