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The impacts of time segment modeling in berth allocation and quay crane assignment on terminal efficiency

机译:泊位分配和码头起重机分配中的时间段建模对码头效率的影响

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PurposeThe purpose of this paper is to study the impacts of time segment modeling approach for berth allocation and quay crane (QC) assignment on container terminal operations efficiency.Design/methodology/approachThe authors model the small time segment modeling approach, based on minutes, which can be a minute, 15min, etc. Moreover, the authors divided the problem into three sub-problems and proposed a novel three-level genetic algorithm (3LGA) with QC shifting heuristics to deal with the problem. The objective function here is to minimize the total service time by using different time segments for comparison and analysis.FindingsFirst, the study shows that by reducing the time segment, the complexity of the problem increases dramatically. Traditional meta-heuristic, such as genetic algorithm, simulated annealing, etc., becomes not very promising. Second, the proposed 3LGA with QC shifting heuristics outperforms the traditional ones. In addition, by using a smaller time segment, the idling time of berth and QC can be reduced significantly. This greatly benefits the container terminal operations efficiency, and customer service level.Practical implicationsNowadays, transshipment becomes the main business to many container terminals, especially in Southeast Asia (e.g. Hong Kong and Singapore). In these terminals, vessel arrivals are usually very frequent with small handling volume and very short staying time, e.g. 1.5h. Therefore, a traditional hourly based modeling approach may cause significant berth and QC idling, and consequently cannot meet their practical needs. In this connection, a small time segment modeling approach is requested by industrial practitioners.Originality/valueIn the existing literature, berth allocation and QC assignment are usually in an hourly based approach. However, such modeling induces much idling time and consequently causes low utilization and poor service quality level. Therefore, a novel small time segment modeling approach is proposed with a novel optimization algorithm.
机译:目的本文旨在研究用于泊位分配和码头起重机(QC)分配的时间段建模方法对集装箱码头运营效率的影响。设计/方法/方法作者基于分钟对小时间段建模方法进行建模,此外,作者将问题分为三个子问题,并提出了一种新的具有QC移位启发式算法的三级遗传算法(3LGA)来解决该问题。这里的目标功能是通过使用不同的时间段进行比较和分析来最大程度地减少总服务时间。结果首先,研究表明,通过减少时间段,问题的复杂性急剧增加。传统的元启发式算法,例如遗传算法,模拟退火等,变得不太有前途。其次,拟议的具有QC移位启发法的3LGA优于传统算法。此外,通过使用较小的时间段,可以大大减少泊位和QC的空闲时间。这大大提高了集装箱码头的运营效率和客户服务水平。实际意义如今,转运已成为许多集装箱码头的主要业务,尤其是在东南亚(例如香港和新加坡)。在这些码头中,通常通常以很少的装卸量和很短的停留时间来频繁到达船只,例如。 1.5小时因此,传统的基于小时的建模方法可能会导致大量泊位和QC空转,因此无法满足其实际需求。在这方面,工业从业者需要一个小的时间段建模方法。原始数据/价值在现有文献中,泊位分配和质量控制分配通常是基于小时的方法。但是,这种建模会导致大量的空闲时间,从而导致利用率低下和服务质量水平低下。因此,提出了一种具有新型优化算法的新型小时间段建模方法。

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