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首页> 外文期刊>EURO Journal on Computational Optimization >Real-time algorithms for the bilevel double-deck elevator dispatching problem
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Real-time algorithms for the bilevel double-deck elevator dispatching problem

机译:双层甲板电梯调度问题的实时算法

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摘要

Double-deck elevators consist of two elevator cars attached together and, thus, save building core space. In the destination control system (DCS), passengers register their destination floors in the elevator lobbies. In return, the DCS immediately assigns an elevator to each transportation request and signals it to the passenger. Based on the additional information, the DCS is able to increase handling capacity under incoming traffic conditions. However, the double-deck DCS does not yet function optimally in mixed lunch traffic, which consists of incoming, outgoing and interfloor traffic. In this paper, the double-deck DCS is further developed by introducing delayed elevator and deck assignments. With the delayed assignments, the serving elevator or deck of each request can be reassigned to another elevator or deck until the last moment. Such a double-deck DCS can better adapt to emerging requests and, as a result, can improve passenger service quality in lunch traffic dramatically. To enable real-time optimization in an elevator group control system, this paper formulates the doubledeck elevator dispatching problem as a bilevel optimization problem and solves the problem fast with a genetic algorithm. Numerical experiments show that the bilevel algorithm outperforms the earlier single-level algorithm in both solution quality and computation times.
机译:双层电梯包括两个电梯轿厢一起连接,因此保存建筑核心空间。在目的地控制系统(DCS)中,乘客在电梯大厅中注册了目的地地板。作为返回,DCS立即将电梯分配给每个运输请求并将其发信号通知给乘客。基于附加信息,DCS能够在传入的流量条件下提高处理能力。但是,双层DC尚未在混合午餐流量中最佳地运作,这包括传入,外向和交通的交通。在本文中,通过引入延迟电梯和甲板分配进一步开发双层DC。通过延迟分配,可以将每份请求的服务电梯或甲板重新分配到另一个电梯或甲板直到最后一刻。这种双层DCS可以更好地适应新兴的请求,因此可以急剧地提高午餐交通中的乘客服务质量。为了在电梯组控制系统中实现实时优化,本文将DOUBLEDECE电梯调度问题交给了DOUBLEDECE电梯调度问题,以遗传算法快速解决问题。数值实验表明,双级算法在解决方案质量和计算时间内越初始单级算法。

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