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Multi-Objective Optimal Operation for Steam Power Scheduling Based on Economic and Exergetic Analysis

机译:基于经济和前进分析的蒸汽功率调度多目标优化运行

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摘要

Steam supply scheduling (SSS) plays an important role in providing uninterrupted reliable energy to meet the heat and electricity demand in both the industrial and residential sectors. However, the system complexity makes it challenging to operate efficiently. Besides, the operational objectives in terms of economic cost and thermodynamic efficiency are usually contradictory, making the online scheduling even more intractable. To this end, the thermodynamic efficiency is evaluated based on exergetic analysis in this paper, and an economic-exergetic optimal scheduling model is formulated into a mixed-integer linear programming (MILP) problem. Moreover, the ε-constraint method is used to obtain the Pareto front of the multi-objective optimization model, and fuzzy satisfying approach is introduced to decide the unique operation strategy of the SSS. In the single-period case results, compared with the optimal scheduling which only takes the economic index as the objective function, the operation cost of the multi-objective optimization is increased by 4.59%, and the exergy efficiency is increased by 9.3%. Compared with the optimal scheduling which only takes the exergetic index as the objective function, the operation cost of the multi-objective optimization is decreased by 19.83%, and the exergy efficiency is decreased by 2.39%. Furthermore, results of single-period and multi-period multi-objective optimal scheduling verify the effectiveness of the model and the solution proposed in this study.
机译:蒸汽供应调度(SSS)在提供不间断的可靠能量方面发挥着重要作用,以满足工业和住宅领域的热量和电力需求。但是,系统复杂性使得它有效地运行挑战。此外,在经济成本和热力学效率方面的运营目标通常是矛盾的,使网上调度更加棘手。为此,基于本文的前进分析评估热力学效率,并将经济逐步的最佳调度模型配制成混合整数线性编程(MILP)问题。此外,ε-约束方法用于获得多目标优化模型的帕累托前面,并引入模糊满足方法来决定SSS的独特操作策略。在单期案例结果中,与仅采取经济指数作为目标函数的最佳调度相比,多目标优化的运营成本增加了4.59%,高效率提高了9.3%。与最优化的调度相比,只采用exerget指数作为目标函数,多目标优化的运营成本降低了19.83%,低通电效率降低了2.39%。此外,单周期和多周期多时期最佳调度的结果验证了该研究中提出的模型的有效性和解决方案。

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