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Multiperiod optimal planning of steam power system for steel plants under time-of-use power price

机译:分时电价下钢厂蒸汽动力系统的多周期优化规划

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This paper presents a generalized formulation for the multiperiod optimal planning of the steam power system in the iron and steel industry with minimization of total operation cost including fuel cost, equipment maintenance cost, the charge for power import and the income from excess of generated power exported to the main grid. The optimization model takes into account the varying nature of surplus byproduct gas flows, unit modeling using thermodynamic principles, generation capacity limits, power and steam balance equations and ramp rate limits. It also considers the connection of the steam power system and the main grid regarding the time-of-use (TOU) power price. In order to obtain the optimal solution, an improved particle swarm optimization algorithm (IPSO) is proposed by incorporating a self-adaptive mutation scheme and efficient constraint handling strategies. Finally, a case study of a typical iron and steel industry is considered for illustrating the model and validates the effectiveness of proposed optimization approach.
机译:本文为钢铁行业的蒸汽动力系统的多周期优化规划提供了一个通用的公式,使总运行成本(包括燃料成本,设备维护成本,电力进口费用和发电剩余收益)最小化。到主网格。优化模型考虑了剩余副产品气流的变化性质,使用热力学原理的单元建模,发电能力极限,功率和蒸汽平衡方程以及升温速率极限。它还考虑了使用时间(TOU)电价的蒸汽动力系统和主电网的连接。为了获得最优解,提出了一种改进的粒子群优化算法(IPSO),该算法结合了自适应变异方案和有效的约束处理策略。最后,以某典型钢铁行业的案例研究为例,说明该模型并验证了所提出的优化方法的有效性。

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