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A series multi-step approach for operation Co-optimization of integrated power and natural gas systems

机译:综合电力和天然气系统运行协同优化系列多步方法

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摘要

Power to gas units and gas turbines have provided considerable opportunities for bidirectional inter-dependency between electric power and natural gas infrastructures. This paper proposes a series of multi-step strategy with surrogate Lagrange relaxation for operation co-optimization of an integrated power and natural gas system. At first, the value of coordination capacity is considered as a contract to avoid dysfunction in each system. Then, the uncertainties and risks analysis associated with wind speed, solar radiation, and load fluctuation are implemented by generating stochastic scenarios. Finally, before employing surrogate Lagrange relaxation, the non-linear and non-convex gas flow constraint is linearized by two-dimension piecewise linearization. In the proposed procedure, constraints for energy storages and renewable energy sources are included. Two case studies are employed to verify the effectiveness of the proposed method. The surrogate Lagrange relaxation approach with coordination branch & cut method enhances the accuracy of convergence and can effectively reduce the decision-making time.
机译:气体单元和燃气轮机的电力为电力和天然气基础设施之间的双向相互依赖性提供了相当大的机会。本文提出了一系列与替代拉格朗日放松的一系列多步策略,用于运行集成电源和天然气系统的运行共同优化。起初,协调能力的价值被视为避免每个系统中功能障碍的合同。然后,通过产生随机场景来实现与风速,太阳辐射和负载波动相关的不确定性和风险分析。最后,在采用代理拉格朗日弛豫之前,非线性和非凸气流约束通过两维分段线性化线性化。在拟议的程序中,包括能源存储和可再生能源的约束。使用两种案例研究来验证所提出的方法的有效性。具有协调分支和切割方法的代理拉格朗日放松方法提高了收敛的准确性,可以有效降低决策时间。

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