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平台导引头隔离度模型辨析 被引量:12
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作者 宋韬 林德福 祁载康 《北京理工大学学报》 EI CAS CSCD 北大核心 2013年第6期575-580,共6页
通过对隔离度的产生机理进行研究,对比分析了基于惯性基准和基于弹体基准的隔离度模型之间的区别.在基于惯性基准的隔离度模型基础上分析了干扰力矩对平台导引头隔离度的影响,并设计滞后校正降低了干扰力矩引起的隔离度.研究结果表明,... 通过对隔离度的产生机理进行研究,对比分析了基于惯性基准和基于弹体基准的隔离度模型之间的区别.在基于惯性基准的隔离度模型基础上分析了干扰力矩对平台导引头隔离度的影响,并设计滞后校正降低了干扰力矩引起的隔离度.研究结果表明,与基于弹体基准的隔离度模型相比,基于惯性基准的隔离度模型对隔离度产生机理的描述更为合理;在导引头稳定回路上增加滞后校正可以有效降低干扰力矩引起的隔离度. 展开更多
关键词 隔离度模型 弹簧力矩 阻尼力矩 滞后校正
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Simulation of bidirectional pedestrian flow in transfer station corridor based on multi forces
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作者 周雪梅 纪翔峰 +1 位作者 黄凰 杨晓光 《Journal of Central South University》 SCIE EI CAS 2014年第6期2520-2525,共6页
A good understanding of pedestrian movement in the transfer corridor is vital for the planning and design of the station,especially for efficiency and safety.A multi-force vector grid model was presented to simulate t... A good understanding of pedestrian movement in the transfer corridor is vital for the planning and design of the station,especially for efficiency and safety.A multi-force vector grid model was presented to simulate the movement of bidirectional pedestrian flow based on cellular automata and forces between pedestrians.The model improves rule-based characteristics of cellular automata,details forces between pedestrians and solves pedestrian collisions by a several-step updating method to simulate pedestrian movements.Two general scenarios in corridor were simulated.One is bidirectional pedestrian flow simulation with isolation facility,and the other is bidirectional pedestrian flow simulation without isolation facility,where there exists disturbance in the middle.Through simulation,some facts can be seen that pedestrians in the case with isolation facility have the largest speed and pedestrians in the case without isolation facility have the smallest speed; pedestrians in the case of unidirectional flow have the largest volume and pedestrians in the case of without isolation facility have the smallest volume. 展开更多
关键词 PEDESTRIANS cellular automata multi forces MICRO-SIMULATION scenarios fundamental diagram
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