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A strengthened mixed-integer linear programming formulation for combined-cycle units

机译:组合循环单元加强混合整数线性规划配方

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摘要

Due to increased utilization of gas-fired combined-cycle units for electric power generation in the U.S., accurate and computationally efficient models for operating these units are crucial to keep an electricity system reliable. The recently proposed edge-based formulation for combined-cycle units helps accurately describe the operations of combined-cycle units by capturing the state transition processes and physical constraints for each turbine. In this paper, we derive tighter constraints and several families of strong valid inequalities to strengthen the edge-based model and improve its computational efficiency by exploring the physical characteristics of combined-cycle units and utilizing the edge-based modeling framework. Meanwhile, we provide the validity and facet-defining proofs for certain inequalities. Finally, the computational results indicate that our derived formulation significantly reduces the computational time, which verifies the effectiveness of proposed tighter constraints and strong valid inequalities. (C) 2018 Elsevier B.V. All rights reserved.
机译:由于U.S的电力发电的利用率增加,用于操作这些单元的准确和计算有效的模型对于保持电力系统可靠,可以是至关重要的。用于组合循环单元的最近提出的基于边缘的制剂有助于通过捕获每个涡轮机的状态转换过程和物理约束来精确地描述组合循环单元的操作。在本文中,我们通过探索组合循环单元的物理特性并利用基于边缘的建模框架来增强基于边缘的模型并提高其计算效率的更严格的限制和几个基于边缘的模型,提高其计算效率。同时,我们为某些不等式提供有效性和方面定义证明。最后,计算结果表明,我们的衍生制剂显着降低了计算时间,验证了提出的更严格约束和强有力的不平等的有效性。 (c)2018年elestvier b.v.保留所有权利。

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