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Multi-area Scheduling Model and Strategy for Power Systems with Large-scale New Energy and Energy Storage

机译:具有大型新能源和储能的电力系统多区调度模型及策略

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摘要

At present, there have been many studies on the application of energy storage on the power supply side and the user side, but studies on the multi-area coordinated scheduling for the new energy and energy storage on the power grid side are still in the initial stage. Therefore, this paper focuses on the application and analysis of energy storage on the power grid side. Based on time sequential simulations, this paper establishes a long-term multi-area scheduling model for the coordinated operation of new energy sources and energy storage in the power grid, and proposes the optimal coordinated operation strategy for new energy sources and energy storage in different scenarios. Based on the data of a provincial power grid in China, the model and scheduling strategy established in this paper are tested. The test results show that for power systems with large-scale new energy, the introduction of energy storage can not only improve the integration level of new energy, but also reduce the total coal consumption level of the system.
机译:目前,有很多关于在电源侧和用户侧的应用的应用,而是对电网侧的新能量和能量存储的多面积协调调度的研究仍在初始中阶段。因此,本文侧重于电网侧储能的应用和分析。基于时间顺序仿真,为新能源和电网中的能量存储的协调运行建立了一个长期多区域调度模型,提出了新能源和能量存储的最佳协调运行策略场景。根据中国省级电网的数据,测试本文建立的模型和调度策略。测试结果表明,对于具有大规模新能源的电力系统,引入储能率不仅可以提高新能源的整合水平,而且还降低了系统的总煤炭消耗水平。

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