建筑电气
建築電氣
건축전기
BUILDING ELECTRICITY
2014年
2期
23-27
,共5页
冉海潮%孙丽华%郭英军%高晓芝
冉海潮%孫麗華%郭英軍%高曉芝
염해조%손려화%곽영군%고효지
建筑智能化%智能疏散诱导系统%动态标识%火灾%人员疏散%人群密度%人员逃生从众度%疏散路径选择度
建築智能化%智能疏散誘導繫統%動態標識%火災%人員疏散%人群密度%人員逃生從衆度%疏散路徑選擇度
건축지능화%지능소산유도계통%동태표식%화재%인원소산%인군밀도%인원도생종음도%소산로경선택도
building intelligent%intelligent evacuation guidance system%dynamic identifies%fire%personnel evacuation%crowd density%personnel escape conformity%evacuation route selectivity
提出人员逃生从众度、疏散路径选择度等基本概念,通过建立“黑屋”实验平台,用多组人群进行多次疏散实验,研究人群疏散行为参数对疏散时间的影响。把建筑结构参数、火灾中的烟气、温度等参变量通过数据融合处理形成统一的知识表征。用人群密度、人员逃生从众度、疏散路径选择度等参数来表征火灾中人群的行为特征。首次构建智能疏散诱导的机理模型,形成基于人群特征的智能疏散诱导系统。通过智能疏散诱导系统对疏散指示灯的PWM控制,实现疏散路径的动态调整与优化,给出人群疏散的动态标识路径。实验结果表明该系统能够缩短疏散时间,提高疏散效率。
提齣人員逃生從衆度、疏散路徑選擇度等基本概唸,通過建立“黑屋”實驗平檯,用多組人群進行多次疏散實驗,研究人群疏散行為參數對疏散時間的影響。把建築結構參數、火災中的煙氣、溫度等參變量通過數據融閤處理形成統一的知識錶徵。用人群密度、人員逃生從衆度、疏散路徑選擇度等參數來錶徵火災中人群的行為特徵。首次構建智能疏散誘導的機理模型,形成基于人群特徵的智能疏散誘導繫統。通過智能疏散誘導繫統對疏散指示燈的PWM控製,實現疏散路徑的動態調整與優化,給齣人群疏散的動態標識路徑。實驗結果錶明該繫統能夠縮短疏散時間,提高疏散效率。
제출인원도생종음도、소산로경선택도등기본개념,통과건립“흑옥”실험평태,용다조인군진행다차소산실험,연구인군소산행위삼수대소산시간적영향。파건축결구삼수、화재중적연기、온도등삼변량통과수거융합처리형성통일적지식표정。용인군밀도、인원도생종음도、소산로경선택도등삼수래표정화재중인군적행위특정。수차구건지능소산유도적궤리모형,형성기우인군특정적지능소산유도계통。통과지능소산유도계통대소산지시등적PWM공제,실현소산로경적동태조정여우화,급출인군소산적동태표식로경。실험결과표명해계통능구축단소산시간,제고소산효솔。
Basic conceptions such as personnel escape conformity and evacuation route selectivity are proposed. A “Dark House” experimental platform is established and multiple groups of crowds are organized to carry out several evacuation experiments and to study the impact of evacuation parameters of people on the evacuation time. Structural parameters, as well as smoke and temperature parameters in the fire, are integrated via data integration to form a uniform knowledge representation. The parameters such as the crowd density, the personnel escape conformity and the evacuation route selectivity are configured to represent the behavior characteristics of the crowds in fire. A mechanism model for intelligent evacuation guidance is initially established to form an intelligent evacuation guidance system based on behavior characteristics of crowds. In presence of the PWM control on evacuation indicators by the intelligent evacuation guidance system, dynamic regulation and optimization for the evacuation route are realized, and a dynamically identified evacuation route is provided for the crowds. Experimental results show that the system can shorten the evacuation time and increase the evacuation efficiency.