China Safety Science Journal ›› 2024, Vol. 34 ›› Issue (5): 168-174.doi: 10.16265/j.cnki.issn1003-3033.2024.05.1680
• Safety engineering technology • Previous Articles Next Articles
LI Changming1(), ZHAO Kaigong2,**(
), ZHANG Xiaolei3, WANG Ruidi1, LI Yansu3
Received:
2023-11-20
Revised:
2024-02-27
Online:
2024-05-28
Published:
2024-11-28
Contact:
ZHAO Kaigong
CLC Number:
LI Changming, ZHAO Kaigong, ZHANG Xiaolei, WANG Ruidi, LI Yansu. Cloud model for risk evaluation of coal mine intelligent projects and its application[J]. China Safety Science Journal, 2024, 34(5): 168-174.
Add to citation manager EndNote|Ris|BibTeX
URL: http://www.cssjj.com.cn/EN/10.16265/j.cnki.issn1003-3033.2024.05.1680
Table 1
Results of weighting calculations
指标 | AHP分析结果 | CRITIC分析结果 | 组合权重 | |||
---|---|---|---|---|---|---|
特征向量 | 权重 | 变异性 | 冲突性 | 权重 | ||
需求T1 | 0.557 4 | 0.061 2 | 0.427 | 1.029 | 0.071 4 | 0.074 |
技术T2 | 0.842 2 | 0.090 8 | 0.452 | 0.758 | 0.081 8 | 0.127 |
复杂性和界面T3 | 0.346 2 | 0.037 3 | 0.437 | 1.068 | 0.054 15 | 0.034 |
绩效与可靠性T4 | 0.423 9 | 0.041 4 | 0.423 | 0.657 | 0.039 24 | 0.028 |
质量T5 | 0.646 4 | 0.063 3 | 0.448 | 0.748 | 0.061 03 | 0.066 |
供应商E1 | 0.773 3 | 0.077 9 | 0.443 | 1.037 | 0.062 86 | 0.083 |
管理规定E2 | 0.595 6 | 0.058 | 0.441 | 0.914 | 0.037 82 | 0.037 |
市场E3 | 0.620 7 | 0.067 5 | 0.444 | 0.558 | 0.062 37 | 0.072 |
客户E4 | 0.493 3 | 0.049 8 | 0.455 | 0.605 | 0.062 11 | 0.053 |
气候E5 | 0.827 3 | 0.088 6 | 0.468 | 0.887 | 0.079 03 | 0.119 |
项目依赖关系O1 | 0.496 4 | 0.042 3 | 0.446 | 0.758 | 0.041 28 | 0.03 |
资源O2 | 0.504 1 | 0.050 6 | 0.42 | 0.933 | 0.056 72 | 0.049 |
资金O3 | 0.480 7 | 0.048 2 | 0.444 | 0.701 | 0.048 7 | 0.04 |
有限度O4 | 0.376 3 | 0.035 6 | 0.442 | 0.469 | 0.044 35 | 0.027 |
估算M1 | 0.456 2 | 0.046 1 | 0.429 | 0.468 | 0.047 66 | 0.037 |
计划编制M2 | 0.361 8 | 0.036 4 | 0.428 | 0.523 | 0.039 96 | 0.025 |
控制M3 | 0.525 1 | 0.050 9 | 0.433 | 0.543 | 0.041 23 | 0.036 |
沟通M4 | 0.547 1 | 0.054 3 | 0.442 | 1.598 | 0.068 26 | 0.063 |
Table 2
Project risk management cloud similarity matrix
指标/云相似度 | 优 | 良 | 中 | 较差 | 差 |
---|---|---|---|---|---|
需求T1 | 0.500 | 0.309 | 0.191 | 0.309 | 0.184 |
技术T2 | 0.382 | 0.236 | 0.146 | 0.236 | 0.209 |
复杂性和界面T3 | 0.390 | 0.447 | 0.276 | 0.447 | 0.227 |
绩效与可靠性T4 | 0.382 | 0.236 | 0.146 | 0.236 | 0.209 |
质量T5 | 0.333 | 0.206 | 0.127 | 0.206 | 0.222 |
供应商E1 | 0.495 | 0.382 | 0.236 | 0.382 | 0.223 |
管理规定E2 | 0.539 | 0.333 | 0.206 | 0.333 | 0.231 |
市场E3 | 0.567 | 0.350 | 0.217 | 0.319 | 0.162 |
客户E4 | 0.333 | 0.206 | 0.127 | 0.206 | 0.222 |
气候E5 | 0.539 | 0.333 | 0.206 | 0.333 | 0.231 |
项目依赖关系O1 | 0.567 | 0.350 | 0.217 | 0.319 | 0.162 |
资源O2 | 0.539 | 0.333 | 0.206 | 0.333 | 0.231 |
资金O3 | 0.255 | 0.539 | 0.333 | 0.552 | 0.255 |
有限度O4 | 0.333 | 0.206 | 0.127 | 0.206 | 0.222 |
估算M1 | 0.539 | 0.333 | 0.206 | 0.333 | 0.231 |
计划编制M2 | 0.447 | 0.276 | 0.171 | 0.276 | 0.207 |
控制M3 | 0.333 | 0.206 | 0.127 | 0.206 | 0.222 |
沟通M4 | 0.382 | 0.236 | 0.146 | 0.236 | 0.209 |
[1] |
赵开功, 李彦平. 我国煤炭资源安全现状分析及发展研究[J]. 煤炭工程, 2018, 50(10):185-189.
|
|
|
[2] |
张森, 翟宁, 韩志超, 等. 基于QRM的航天装备研制项目质量风险管理研究[J]. 项目管理技术, 2022, 20(11):116-119.
|
|
|
[3] |
刘祖容, 郭慧娟. 基于熵权-模糊综合评价法的EPC总承包项目风险管理研究[J]. 项目管理技术, 2022, 20(9):53-58.
|
|
|
[4] |
樊荣. 基于熵权模糊综合法的工程项目施工质量风险评价[D]. 成都: 西南交通大学, 2017.
|
|
|
[5] |
杨琳, 吕文逸. 基于IPRMM模型的国际工程项目风险管理成熟度[J]. 武汉大学学报:工学版, 2020, 53(4):310-317.
|
|
|
[6] |
杨梦, 陈宁, 范誉航. 煤矿事故案例存储与检索研究[J]. 煤炭科学技术, 2021, 49(9): 103-109.
|
|
|
[7] |
李克潮. 基于云模型的实验室不确定性综合评价[J]. 实验科学与技术, 2021, 19(6):146-151.
|
|
|
[8] |
陈艳, 吕云翔, 谢运慧. 基于PT-MA理论的PPP项目风险管理行为演化博弈分析[J]. 系统科学学报, 2020, 28(4):65-70.
|
|
|
[9] |
段小萍, 陈奉功. 基于全生命周期的合同能源管理项目融资风险研究[J]. 科技管理研究, 2018, 38(23):235-243.
|
|
|
[10] |
徐选华, 吴慧迪. 基于改进云模型的语言偏好信息多属性大群体决策方法[J]. 管理工程学报, 2018, 32(1):117-125.
|
|
|
[11] |
薛黎明, 李长明, 郑志学, 等. 基于二维云模型和Apriori算法的围岩稳定性分级研究[J]. 铁道学报, 2020, 42(6):121-128.
|
|
|
[12] |
薛黎明, 李长明, 郑志学, 等. 基于云理论的综合评价方法[J]. 系统科学学报, 2020, 28(2):68-72.
|
|
|
[13] |
郭戎潇, 夏靖波, 董淑福, 等. 一种基于多维云模型的多属性综合评价方法[J]. 计算机科学, 2010, 37(11):75-77.
|
|
|
[14] |
柳纯录. 信息系统项目管理师教程[M]. 清华大学出版社, 2008:332-337.
|
[15] |
王经略, 周国华, 彭新艳. 基于DEMATEL和ANP的海外铁路项目风险评估模型[J]. 科技管理研究, 2018, 38(11):219-227.
|
|
|
[16] |
高登云, 李瑞群, 侯志成. 神东矿区采掘接续精细化管理研究[J]. 煤炭工程, 2022, 54(5):59-62.
|
|
|
[17] |
姚建业, 张珊, 郝国强. 基于集对云模型的边坡稳定性评价[J]. 煤田地质与勘探, 2019, 47(1):162-167.
|
|
|
[18] |
陈沅江, 吴婷婷. 基于熵权正态云模型的软岩等级评价[J]. 煤田地质与勘探, 2017, 45(5):121-126,134.
|
|
|
[19] |
赵开功. 煤制油可燃气泄漏风险分析方法与协同救援技术研究[D]. 北京: 北京科技大学, 2023.
|
|
|
[20] |
赵开功, 张晓蕾, 李长明, 等. 铁路列控系统应急案例知识重用方法[J]. 中国安全科学学报, 2022, 32(增2):217-224.
|
doi: 10.16265/j.cnki.issn1003-3033.2022.S2.0053 |
|
[21] |
薛黎明, 朱琳龙, 王豪杰, 等. 基于漂移度-未确知测度模型的煤层注水效果评价[J]. 矿业科学学报, 2019, 4(1):41-49.
|
|
[1] | WU Jianjun, CHEN Yan, ZHU Qinghua, HU Shenping. Emergency ship maneuvering method for crossing encounter situation under immediate danger threat [J]. China Safety Science Journal, 2024, 34(5): 238-246. |
[2] | WANG Dongying, CHEN Xiaoping, LIU Quan, ZHAO Tianhao, YAN Xu. Risk ranking of oil and gas pipeline based on improved cloud model-FMEA [J]. China Safety Science Journal, 2024, 34(5): 61-68. |
[3] | PAN Hanchuan, LIU Danyang, ZHANG Yurui, LIU Zhigang, SHANG Bin. Urban rail transit line operation safety evaluation based on combined weighting-extension cloud method [J]. China Safety Science Journal, 2024, 34(4): 160-166. |
[4] | CHEN Na, HU Yitong, YUAN Yingfeng, QIN Xiangnan, LIU Jun. Risk assessment of firefighter training injury based on game theory combinatorial weighting and cloud model [J]. China Safety Science Journal, 2024, 34(4): 232-238. |
[5] | HUANG Guoping, LEI Haoxiang. Comprehensive evaluation of emergency logistics suppliers based on cloud TOPSIS method [J]. China Safety Science Journal, 2024, 34(2): 217-224. |
[6] | LI Feng, ZHANG Laibin, DONG Shaohua, CHEN Lin, ZHANG Hang. Research on sealing failure risk assessment of station flange system based on EWM-AHP-cloud model [J]. China Safety Science Journal, 2023, 33(9): 150-156. |
[7] | MO Junwen, WANG Ruirui, TENG Cangguo. Assessment of unsafe behavior of construction personnel in high-altitude railway projects [J]. China Safety Science Journal, 2023, 33(8): 30-38. |
[8] | WEI Lin, LI Lihua, QIN Liqiang, XIAO Yanhui, TANG Yuguang. Comprehensive evaluation of emergency response capability of urban subway terrorist attacks [J]. China Safety Science Journal, 2023, 33(7): 213-221. |
[9] | LUO Zhenhua, GUO Juntao, HAN Jianqiang. Construction safety risk assessment of prefabricated subway station based on cloud model [J]. China Safety Science Journal, 2023, 33(6): 88-95. |
[10] | CHENG Fangming, WANG Chenchen, YUAN Xiaofang. Evaluation of urban emergency management capabilities from perspective of safe development [J]. China Safety Science Journal, 2023, 33(5): 158-167. |
[11] | WU Yu, YANG Meng, ZHANG Qingsong. Evaluation method of collaborative capacity of cabin fire emergency response based on cloud model [J]. China Safety Science Journal, 2023, 33(12): 206-213. |
[12] | MA Tianxing, LIN Yun, ZHOU Xiaobin, WEI Peirong, LI Renzong, SU Jiayu. Entropy weight-normal cloud model for water inrush risk prediction of coal seam floor [J]. China Safety Science Journal, 2022, 32(S1): 171-177. |
[13] | ZHANG Miao. Risk assessment of metro operation based on G1-EW combination weighting cloud model [J]. China Safety Science Journal, 2022, 32(6): 163-170. |
[14] | LIU Jiahao, YU Yang, ZHANG Zhenxing, YU Jianxing, WANG Weiwei, FU Yiqin. Risk assessment method of risers based on two-dimensional cloud model and BN [J]. China Safety Science Journal, 2022, 32(5): 147-154. |
[15] | YUE Rentian, ZHANG Zhibo. Sub-safety state identification of ATC under multi-factor coupling of vulnerability [J]. China Safety Science Journal, 2022, 32(4): 8-14. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||