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A multi-objective joint planning of transmission channel and energy storage system considering economy and flexibility

机译:考虑经济性和灵活性的输电线路与储能系统多目标联合规划

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The uncertain output of renewable energy requires the power system to have flexible adjustment ability, which is called as flexibility. However, current research on power system flexibility planning mainly focuses on power supply configuration and rarely considers the flexibility of line planning. Because of it, this paper proposes a joint planning method of transmission channel and energy storage system considering the dual objectives of economy and flexibility. The model adopts a two-layer optimization model. The upper layer takes the optimal economy and flexibility as the goal, which decides the line planning scheme; while the lower layer is optimized for operational economy, determining the power system scheduling strategy, and returns the results to the upper layer. The model is solved by the NSGA2 optimization algorithm, so the multi-objective optimization is achieved. On this basis, a method of constructing renewable energy output scenes according to fluctuation randomness is proposed, which provides data basis for the planning optimization model. Finally, the method is simulated in the power grid with high proportion of renewable energy to verify the effectiveness.
机译:可再生能源输出的不确定性要求电力系统具有灵活的调节能力,即柔性。然而,目前对电力系统柔性规划的研究主要集中在电源配置上,很少考虑线路规划的柔性。基于此,本文提出了一种考虑经济性和灵活性双重目标的输电通道和储能系统联合规划方法。该模型采用两层优化模型。上层以最优经济性和灵活性为目标,确定线路规划方案;而下层则针对运行经济性进行优化,确定电力系统调度策略,并将结果返回给上层。该模型采用NSGA2优化算法求解,实现了多目标优化。在此基础上,提出了一种根据波动随机性构建可再生能源输出场景的方法,为规划优化模型提供了数据依据。最后,在可再生能源比例较高的电网中进行了仿真,验证了该方法的有效性。

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