In-depth Study on RTT-HC-MTT Relationship for Passenger Demand beyond Elevator Contract Capacity by Simulation

Albert Ting Pat So, Lutfi Al-Sharif
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Abstract

The traditional elevator system design practice is to calculate the round trip time (RTT) and associated parameters of pure incoming traffic during up-peak, followed by real-time computer simulation. Recent studies indicated that the normal traffic is much more complicated, consisting of a mixture of incoming, outgoing and interfloor patterns. The Universal RTT, under such complicated traffic patterns, was analytically developed eight years ago based on the concept of an appropriate origindestination matrix describing the passenger transit probability, and verified by Monte Carlo simulation. That model is based on the assumption that the total number of passengers demanding service within one round trip is limited to the elevator contract capacity, which is in line with the traditional up-peak incoming RTT formula. The idea of extending the consideration to beyond the contract capacity was initiated two years ago. In this article, an in-depth study on such consideration is carried out so that the performance such as RTT, handling capacity (HC) and mean transit time (MTT) etc. under different traffic patterns is evaluated and analyzed with the help of Monte Carlo simulation. This article may help designers optimally size an elevator system during the RTT calculation stage without oversizing it if the prevalent traffic patterns of the building are known.
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电梯合同载客量以外乘客需求的RTT-HC-MTT关系仿真研究
传统的电梯系统设计方法是计算高峰时段纯入站流量的往返时间(RTT)及相关参数,然后进行计算机实时仿真。最近的研究表明,正常的交通要复杂得多,包括进出和楼层之间的混合模式。在这种复杂的交通模式下,通用RTT是在八年前基于描述乘客过境概率的适当始发目的地矩阵的概念分析开发的,并通过蒙特卡罗模拟进行了验证。该模型基于一次往返内需要服务的乘客总数受限于电梯合同容量的假设,符合传统的高峰入站RTT公式。将考虑范围扩大到合同能力以外的想法是在两年前提出的。本文对这一考虑进行了深入的研究,借助蒙特卡罗仿真对不同交通模式下的RTT、处理能力(HC)、平均通行时间(MTT)等性能进行了评价和分析。本文可以帮助设计师在RTT计算阶段优化电梯系统的尺寸,而不会在建筑物的普遍交通模式已知的情况下过大。
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