基于遗传网络规划的双层电梯系统空闲轿厢分配算法嵌入式控制器

Jin Zhou, Lu Yu, S. Mabu, K. Shimada, K. Hirasawa, S. Markon
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引用次数: 2

摘要

迄今为止,人们对双层电梯系统(DDES)进行了大量的研究,以探索一些更有效的算法来提高系统的运输能力,特别是在繁忙的交通模式下。这些算法的主要思想是通过尽可能多地将具有相同目的地的乘客分组来减少往返旅程中的停靠次数。与在这种模式下发生的情况不同,在这种模式下,所有的笼子几乎总是保持移动,但在轻交通模式下,有些笼子会闲置。因此,在开发DDES控制器时,如何调度这些在大流量模式下很少考虑的空闲网箱就变得非常重要。在本文中,我们提出了一种基于遗传网络规划的DDES控制器,该控制器嵌入了空闲笼分配算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Idle cage assignment algorithm-embedded controller of Dould-Deck Elevator Systems using genetic network programming
So far, many studies on Double-Deck elevator systems (DDES) have been done for exploring some more efficient algorithms to improve the system transportation capacity, especially in a heavy traffic mode. The main idea of these algorithms is to decrease the number of stops during a round trip by grouping the passengers with the same destination as much as possible. Unlike what happens in this mode, where all cages almost always keep moving, there is the case, where some cages become idle in a light traffic mode. Therefore, how to dispatch these idle cages, which is seldom considered in the heavy traffic mode, becomes important when developing the controller of DDES. In this paper, we propose a DDES controller using genetic network programming with idle cage assignment algorithm embedded for a light traffic mode.
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