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港口工程进度风险分析研究
引用本文:欧阳斌,王琳,黄敬东.港口工程进度风险分析研究[J].水运工程,2005(1):27-32.
作者姓名:欧阳斌  王琳  黄敬东
作者单位:1. 交通部科学研究院,北京,100029
2. 中交水运规划设计院,北京,100007
摘    要:运用网络计划蒙特卡洛仿真,从宏观的项目层和微观的工序层分别进行进度风险分析:在项目层,仿真计算获取总工期的统计分布,据此计算某一计划工期的项目完工概率或完工风险,或给定完工概率或风险水平下制定计划工期;在工序层,通过计算各工序关键概率(ACP)及工序关键指标(ACI),掌握关键线路、关键工序分布情况,甄别高风险工作。此外,用VisualC 开发了一个网络计划仿真软件,并应用于一港口工程实例分析。

关 键 词:网络计划  蒙特卡洛仿真(MCS):进度风险  项目总工期  工序关键概率(ACP)  工序关键指标(ACI)
文章编号:1002-4972(2005)01-0027-06
修稿时间:2004年6月10日

Study on Project Schedule Risk Analysis in Harbour Engineering
OUYANG Bin,WANG Lin,HUANG Jing-dong.Study on Project Schedule Risk Analysis in Harbour Engineering[J].Port & Waterway Engineering,2005(1):27-32.
Authors:OUYANG Bin  WANG Lin  HUANG Jing-dong
Institution:OUYANG Bin1,WANG Lin2,HUANG Jing-dong2
Abstract:Using the Monte Carlo Simulation(MCS), project schedule risk analysis is implemented at both the macroscopic level of project and the microscopic level of activity. At the project level, the statistical distribution of the project completion time can be obtained by simulation calculation. On the basis of this, the project completion probability or completion risk can be acquired given a project completion time, or a rational project completion time can be determined given a certain completion probability or completion risk level. At the activity level, two criticality indices, i.e., Activity Criticality Probability(ACP)and Activity Cruciality Index(ACI), are calculated, through which not only the distribution of critical paths and critical activities in the network are revealed, but also the high-risk activities are identified. Furthermore, a network planning software with the function of MCS has been developed with the Visual C and is applied to the schedule risk analysis of a project.
Keywords:network planning  Monte Carlo Simulation(MCS)  schedule risk  project duration  Activity Criticality Probability(ACP)  Activity Cruciality Index(ACI)
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