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An edge-based formulation for combined-cycle units

机译:基于边缘的联合循环机组配方

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As the number of combined-cycle units increases, efficient modeling approaches for these units play important roles for independent system operators (ISOs). Based on various combinations of combustion turbines (CTs) and steam turbines (STs), the combined-cycle unit could work at different configurations (modes) with different efficiencies. In this paper, we propose an edge-based formulation for the combined-cycle units in the unit commitment problem to improve the accuracy and effectiveness of current modeling approaches. Our formulation can 1) clearly describe the transition processes among different configurations so as to satisfy the ISO financial offer submission requirements and (2) capture physical constraints of each turbine, including the exact minup/ down time and time dependent startup cost, in the combined-cycle units so as to increase the operational flexibility while ensuring system feasibility. This model fits well with the current U.S. deregulated electricity market. The final numerical studies show that our approaches perform better than the current configuration-based modeling approach.
机译:随着联合循环单元数量的增加,这些单元的有效建模方法对于独立系统操作员(ISO)发挥着重要作用。基于燃气轮机(CT)和蒸汽轮机(ST)的各种组合,联合循环机组可以在不同的配置(模式)下以不同的效率工作。在本文中,我们为单位承诺问题中的联合循环单位提出了一种基于边的公式,以提高当前建模方法的准确性和有效性。我们的公式可以:1)清楚地描述不同配置之间的过渡过程,以满足ISO金融报价的提交要求;(2)捕获每个涡轮机的物理约束,包括精确的上下/停工时间以及与时间相关的启动成本,循环单元,以在确保系统可行性的同时增加操作灵活性。该模型非常适合当前美国放松管制的电力市场。最终的数值研究表明,我们的方法比当前基于配置的建模方法表现更好。

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