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Optimization of refinery hydrogen network based on chance constrained programming

机译:基于机会约束规划的炼厂氢气网络优化

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Deterministic optimization approaches have been developed and used in the optimization of hydrogen network in refinery. However, uncertainties may have a large impact on the optimization of hydrogen network. Thus the consideration of uncertainties in optimization approaches is necessary for the optimization of hydrogen network. A novel chance constrained programming (CCP) approach for the optimization of hydrogen network in refinery under uncertainties is proposed. The stochastic properties of the uncertainties are explicitly considered in the problem formulation in which some input and state constraints are to be complied with predefined probability levels. The problem is then transformed to an equivalent deterministic mixed-integer nonlinear programming (MINLP) problem so that it can be solved by a MINLP solver. The solution of the optimization problem provides comprehensive information on the economic benefit under different confidence levels by satisfying process constraints. Based on this approach, an optimal and reliable decision can be made, and a suitable compensation between the profit and the probability of constraints violation can be achieved. The approach proposed in this paper makes better use of resources and can provide significant environmental and economic benefits. Finally, a case study from a refinery in China is presented to illustrate the applicability and efficiency of the developed approach.
机译:已经开发出确定性优化方法,并将其用于炼油厂氢网络的优化。但是,不确定因素可能会对氢网络的优化产生很大影响。因此,优化方法中不确定性的考虑对于氢网络的优化是必要的。提出了一种不确定性下的炼油厂氢网络优化机会约束规划方法。在问题表述中明确考虑了不确定性的随机性质,其中一些输入和状态约束要与预定义的概率水平保持一致。然后将该问题转换为等效的确定性混合整数非线性规划(MINLP)问题,以便可以通过MINLP求解器对其进行求解。优化问题的解决方案通过满足过程约束条件,提供了不同置信度下的经济效益的综合信息。基于此方法,可以做出最佳而可靠的决策,并可以在利润和违反约束的可能性之间进行适当的补偿。本文提出的方法可以更好地利用资源,并可以提供巨大的环境和经济效益。最后,从中国一家炼油厂进行了案例研究,以说明该改进方法的适用性和效率。

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