Two-Stage Robust Economic and Carbon Emission Optimal Scheduling of Integrated Energy System

Chenjian Zhang, Chenbin Lu, Z. Bao
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Abstract

A two-stage robust optimization model with min-max-min formulation is proposed for the cooling-heating-electricity-gas integrated energy system (IES), respectively with the optimization objective of minimizing operation cost and carbon emission. The uncertainties of photovoltaic (PV) output and electricity demand are considered. The middle and inner layers are reformulated into a single-layer optimization by using duality theory and big-M method. The outer layer searches for the electricity purchase or sale decision considering the worst-case scenario, determined by the middle and inner layer. Column and constraint generation (C&CG) algorithm are employed to solve the two-stage model. Case study demonstrates the effectiveness of the presented model and shows the different scheduling results under the economic and carbon emission objectives.
综合能源系统两阶段稳健经济与碳排放最优调度
针对冷热电气一体化能源系统,分别以运行成本和碳排放最小为优化目标,建立了最小-最大-最小两阶段鲁棒优化模型。考虑了光伏发电输出和电力需求的不确定性。利用对偶理论和大m方法将中间层和内层重新表述为单层优化。外层搜索考虑到最坏情况的购电或售电决策,由中间层和内层确定。采用列约束生成(C&CG)算法求解两阶段模型。通过实例验证了该模型的有效性,并给出了在经济目标和碳排放目标下的不同调度结果。
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