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Optimization Design of X-ray Conveyer Belt Length for Subway Security Check Systems in Beijing, China

机译:北京北京地铁安全检查系统X射线输送带长度的优化设计

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The frequent terrorist attacks in subways has dramatically increased the necessity and importance of security check systems (SCSs). The implementation of a SCS in China has successfully eliminated lots of potential safety hazards. However, the excessive waiting time due to the SCS is also an issue. SCS efficiency is greatly affected by the length of the conveyer belt of the X-ray machine (CBXM). A scheme for optimizing the CBXM length to accommodate different passenger flows is proposed in this paper. A modeling framework is developed for associating the CBXM length with the queuing waiting time based on a M/M/1/N queuing model. The optimal scheme of CBXM length calculated from the model demonstrates that the passenger queuing time is saved by 15.7%, 16.0%, and 23.3% with the passenger arrival rate of 4000, 5000, and 6000, respectively, greatly reducing queuing crowdedness. The scheme can be used to select X-ray machines for subway stations by their passenger arrival rates. In addition, the findings of this paper could be a crucial supplement and perfect the design code of subway SCSs.
机译:地铁的频繁恐怖袭击大大增加了安全检查系统(SCSS)的必要性和重要性。中国SCS的实施成功地消除了许多潜在的安全危险。但是,由于SCS引起的过度等待时间也是一个问题。 SCS效率受到X射线机(CBXM)的传送带长度的大大影响。本文提出了一种用于优化CBXM长度以适应不同乘客流的方案。开发了一种建模框架,用于将CBXM长度与基于M / M / 1 / N排队模型的排队等待时间相关联。根据该模型计算的CBXM长度的最佳方案表明,客人排队时间分别为4000,5000和6000的乘客到货率下节省了15.7%,16.0%和23.3%,极大地减少了排队拥挤。该方案可用于通过其乘客到达速率选择地铁站的X射线机。此外,本文的调查结果可能是一个重要的补充和完善地铁SCS的设计代码。

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