Requirement Assessment of Demand-side Flexibility for New Power Systems with High Penetration of Renewable Generation

Z. Wang, Yinglin Liu, Qi Li, Yu Li, Haozhe Liang, Tianxiao Huang
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Abstract

When a power system is integrated with high penetration of renewable generation, increase of demand-side flexibility is an important means to improve renewable accommodation. In order to analyze the needs of demand-side flexibility for long time period, based on conventional SCUC model, an improved chronological production cost simulation model with consideration of the coordination of generation, transmission, load and energy storage systems is proposed. In the model, characteristic of controllable demand is analyzed. An aggregation model is established to equivalent decentralized and small-scale demand resources to 3 ideal demand-side models including load curtailment model, valley filling model and load shifting model. The demand aggregation model is able to reduce the computation complex with satisfaction of computing time. An actual provincial power system is used for the case study to demonstrate the effectiveness of the proposed method.
高可再生能源发电渗透率的新电力系统需求侧灵活性需求评估
在可再生能源发电渗透率较高的电力系统中,增加需求侧灵活性是改善可再生能源发电适应性的重要手段。为了分析长期需求侧灵活性的需求,在常规scc模型的基础上,提出了一种考虑发电、输电、负荷和储能系统协调的改进时序生产成本仿真模型。在模型中,分析了可控需求的特点。建立了将分散、小规模的需求资源等价于减载模型、填谷模型和移载模型3种理想需求侧模型的聚合模型。需求聚合模型能够在满足计算时间的前提下降低计算复杂度。以某省电网为例,验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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