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An optimized operation algorithm for twin or multi-cage lift systems for high-rise construction sites

机译:高层施工站点的双齿轮升力系统优化运行算法

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Purpose: The objective of this study is to develop an algorithm which can increase productivity of lift operation on temporary twin-cage and multi-cage lifts for construction sites. The algorithm is developed for optimizing operation efficiency at high-rise construction sites. Moreover, it is expected that the algorithm can reduce working hours and traffic queues through operation optimization. Method the developed algorithm can optimize lift operation time by using a lifting cycle-estimating method which is generated based on the fundamental concerns when lift scheduling is planned. Lifting cycle-estimation is a vital part for an arithmetic computation based on lift selection algorithm which controls factors such as distance between each lifts, among passengers, and distances among lifts according to moving direction. Results & Discussion We carried out surveys and conducted interviews with mechanical and construction professionals to analyse fundamental considerations of material lifting operation planning. We extracted the weight of each of the relevant factors. Based on the weight of factors, we set the lifting cycle-estimate suitable for high-rise buildings. The optimized operating algorithm is extracted through lifting cycle-estimates. Finally, we propose the prototype of an interface that is embedded into the lift with the optimized operating algorithm.
机译:目的:本研究的目的是开发一种算法,可以提高临时双架和施工地点的多笼升降机的提升操作的生产率。该算法开发用于优化高层施工地点的运行效率。此外,预计该算法可以通过操作优化来减少工作时间和流量队列。方法通过使用基于升力调度时,通过使用基于基本问题产生的提升循环估计方法来优化升程操作时间。提升循环估计是基于提升选择算法的算术计算的重要组成部分,其控制乘客之间的每个升降机之间的因素,以及根据移动方向升​​降机之间的升降机之间的距离。结果与讨论,我们进行了调查,并进行了机械和建筑专业人员采访,分析了材料提升运营计划的基本要点。我们提取了每个相关因素的重量。根据因素的重量,我们设定了适合高层建筑的提升循环估计。通过提升循环估计提取优化的操作算法。最后,我们提出了用优化的操作算法嵌入到电梯中的接口的原型。

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