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Optimal scheduling of a byproduct gas system in a steel plant considering time-of-use electricity pricing

机译:考虑分时电价的钢铁厂副产品煤气系统的最佳调度

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摘要

Most integrated iron and steel corporations have built on-site power plants (OSPPs) to reduce their purchased electricity and thus to decrease the overall electricity cost. Due to their large quantities and easy access, the byproduct gases generated in the steel production process are the main fuels used for the OSPPs. The introduction of time-of-use (TOU) electricity pricing in the steel industry has made it possible to decrease electricity costs through an optimal collaboration between the energy storage equipment (gasholders) and OSPPs. In this paper, a byproduct gas scheduling model based on mixed-integer linear programing (MILP) considering the TOU electricity pricing is proposed. In this model, Pareto optimality and fuzzy sets were used to find the best compromise solution for two conflicting objectives: achieving the gasholder stability and reducing the electricity purchasing cost. In addition, the influence of the operation load on the boiler efficiency was considered to improve the model accuracy. The results show that the optimisation can achieve better peak-valley shifting of the electricity generation and decrease the electricity purchasing cost by 29.7% with improved gasholder stability. Optimisation increased the overall boiler efficiency by 3.3%, indicating that the byproduct gases are effectively and efficiently used. The sensitivity analysis results indicate that the peak-valley shifting of the electricity generation improves with increasing peak-valley price rate (PVR) at the expense of decreasing the overall gasholder stability. (C) 2017 Elsevier Ltd. All rights reserved.
机译:大多数集成钢铁公司都建立了现场发电厂(OSPP),以减少购买的电力,从而降低总体电力成本。由于其大量且易于获取,钢铁生产过程中产生的副产物气体是用于OSPP的主要燃料。钢铁行业采用分时电价(TOU)可以通过储能设备(储气罐)和OSPP之间的最佳协作来降低电费。本文提出了一种基于混合整数线性规划(MILP)的副产品煤气调度模型,该模型考虑了TOU电价。在该模型中,使用帕累托最优性和模糊集来找到针对两个矛盾目标的最佳折衷解决方案:实现气柜稳定性和降低购电成本。另外,考虑了运行负荷对锅炉效率的影响,以提高模型精度。结果表明,该优化方法可以实现更好的发电峰谷平移,并降低购电成本29.7%,同时提高了储气库的稳定性。优化使锅炉整体效率提高了3.3%,这表明副产物气体得到了有效利用。敏感性分析结果表明,随着峰谷电价(PVR)的增加,发电的峰谷移动得到改善,但会降低整体储气库的稳定性。 (C)2017 Elsevier Ltd.保留所有权利。

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