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A method for determining the allocation strategy of on-shore power supply from a green container terminal perspective

机译:从绿色集装箱码头角度确定陆上电力分配策略的方法

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摘要

The main contribution of this paper is to determine the allocation strategy of on-shore power supply (OPS) comprising additional power capacity of OPS and adopting patterns of OPS at berth, to realize the trade-off between total cost of OPS and carbon emissions of ships. Firstly, carbon emission formulations, adopting patterns of OPS and arrival patterns of ships are described. Then, in order to minimize total cost and carbon emissions, and integer programming model for OPS allocation problem is proposed. Next, a simulation-based solution method in developed to resolve the optimization model, which consists of inner simulation module and outer optimization module. The outer module enumerates all the allocation scenarios and evaluates the results from the inner module. The inner module introduces a simulation model to represent the stochastic operation system in the container terminal and outputs results to outer module. Finally, taking a port in China as an example, this paper designs and conducts a series of experiments and discovers that the sensitivity of results emphasizes the importance of electricity price on the optimal allocation. When electricity price is lower or larger than 0.3 $/kWh, the optimal power capacity is 9200 or 5230 kW, correspondingly.
机译:本文的主要贡献是确定包括额外OPS容量并采用泊位OPS模式的岸上电源(OPS)分配策略,以实现OPS总成本与碳排放之间的权衡。船。首先,描述了碳排放公式,采用OPS模式和船舶到达模式。然后,为了使总成本和碳排放量最小,提出了用于OPS分配问题的整数规划模型。接下来,开发了一种基于仿真的求解方法来求解优化模型,该方法由内部仿真模块和外部优化模块组成。外部模块枚举所有分配方案,并评估内部模块的结果。内部模块引入仿真模型来表示集装箱码头中的随机操作系统,并将结果输出到外部模块。最后,以中国的一个港口为例,设计并进行了一系列实验,发现结果的敏感性强调了电价对最优配置的重要性。当电价低于或高于0.3 $ / kWh时,最佳功率容量分别为9200或5230 kW。

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