考虑多时间尺度光伏出力不确定性的储能协同优化配置方法

A Collaborative Optimal Allocation Method for Energy Storage Systems Considering Multi-temporal-scale Output Uncertainty of Photovoltaic Power

  • 摘要: 针对大型光伏电站出力不确定性和在直流外送及频率稳定性方面的现实需要,本文提出一种考虑多时间尺度光伏出力不确定性的储能协同优化配置方法。首先,对光储系统的运行特性进行建模,特别是对光伏极短时功率波动情况、储能惯性支撑能力和频率响应特性进行建模;其次,以光储电站年化总成本最小为目标,考虑投资约束、直流传输约束、频率稳定性约束等约束条件,构建储能协同配置模型;然后,在中长期-短期-极短期多时间尺度上对光伏出力的不确定性进行表征,构建储能协同配置分布鲁棒优化模型并进行求解;最后,通过算例分析,验证本文所提方法和模型的有效性。

     

    Abstract: To address the output uncertainty of large-scale photovoltaic power stations and the practical requirements regarding DC output and frequency stability, this study proposes an energy storage collaborative optimization allocation method that accounts for photovoltaic power output uncertainty across multi-temporal scales. First, the operational characteristics of the optical storage system are modeled. In particular, the very short-term power fluctuations of photovoltaic system, the inertial support capacity of energy storage, and the frequency response characteristics are modeled. Second, to minimize the total annual cost of the photovoltaic-energy storage power station, an energy storage collaborative configuration model is constructed, considering constraints such as investment constraints, DC transmission constraints and frequency stability constraints. Subsequently, the uncertainty of PV output is characterized across multiple temporal scales including medium and long term, short term and very short term. A distributionally robust optimization model for the coordinated configuration of energy storage systems is constructed and solved. Finally, a numerical example is provided to verify the effectiveness of the proposed method and model.

     

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