基于精确停车位置的三维电梯系统解析RTT估计——推广到多层非均匀人群应用

A. So
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引用次数: 1

摘要

三维电梯系统将是工业发展的趋势。传统上,设计师首先对交通分析进行计算,得到一个总体概念,然后再进行仿真,得到细节。这一传统至今仍在世界各地保留着。在之前的一篇文章中,采用“扫描仪”方法将二维或三维扫描路径转换为一维线,并生成复杂的原点/目的地停止矩阵来计算往返时间(RTT)。假设一次往返只服务一层,生成一个概率矩阵。在最近的一篇文章中,为了便于设计人员推理,通过使用顺序统计,开发了一种将三维系统中的一系列可重复止损分解为若干系列不可重复止损的方法。在这里,假设所有潜在站点和单一楼层服务的均匀人口分布。在本文中,通过遵循最新文章的概念,RTT计算可以扩展到站点和多层应用的非均匀人口分布,这可能是计算真正三维电梯系统RTT的最一般方法。
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Analytical RTT Estimation of a 3-D Elevator System by Exact Stop Positions - Extension to Multi-floor and Non-uniform Population Applications
3-dimensional (3-D) elevator systems will be the industrial trend. Traditionally, designers first perform a calculation on traffic analysis to get an overall concept and then go ahead to carry out simulation to obtain details. This tradition is still maintained throughout the world. In one previous article, a “Scanner” approach was adopted to convert a 2-D or 3-D path of scanning to a 1-dimensional line and a sophisticated origin/destination stops matrix was generated to calculate the round trip time (RTT). A probability matrix was generated with an assumption that only one floor was served in one round trip. In a more recent article, by using order statistics, a method to break down a series of repeatable stops in a 3-D system into several series of non-repeatable stops was developed for easy reasoning by designers. Here, a uniform population distribution of all potential stops and a single floor service were assumed. In this article, by following the concept of the most recent article, RTT calculation could be extended to non-uniform population distribution of stops and multi-floor applications which may be the most general approach to calculate the RTT of a truly 3-D elevator system.
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