Comprehensive Evaluation Model of Urban Emergency Management Capability and Application Based on AHP Method

Author(s):  
Xia Wang ◽  
Shenhui Wu ◽  
Xianjun Guan
Author(s):  
Wang Yuansheng ◽  
Zhang Ying ◽  
Guo Xinyao

At present, various public emergencies occur frequently around the world, and the world has entered the stage of a “high-risk society”. Urban community as the carrier of all kinds of public emergencies, its role has become increasingly prominent and become the focus of the current research, but in the urban community emergency management capacity evaluation system, the related studies are still less. To more effectively identify the key internal and external factors that affect the emergency management ability of the urban community, and evaluate scientifically and effectively, on the basis of the existing studies, the evaluation index system of community emergency management capability was established according to the emergency management cycle theory. In view of the complexity and fuzziness of the emergency management capability of the urban community, a multi-layer fuzzy comprehensive evaluation model based on entropy weight was established, and the emergency management capability evaluation of community was carried out under the background of the public emergency event of COVID-19 epidemic. The results show that the evaluation results and improvement suggestions of the multi-layer fuzzy comprehensive evaluation model based on entropy weight are consistent with the actual situation, indicating that the index system and the selected method are reasonable and effective. This study provides a new decision-making idea and method for the evaluation of urban community emergency management capability, and has high application value.


2005 ◽  
Vol 291-292 ◽  
pp. 157-162 ◽  
Author(s):  
Hong Zhong Huang ◽  
Yong Hua Li ◽  
L.-H. Xue

Grinding machining quality contains machining precision and grinding surface integrality. The factors influencing grinding machining quality have fuzzy characteristics. For example, the magnitude and measure methods of grinding surface roughness have fuzzy uncertainties. The grades of the machining quality are vague, and there is no definite boundary between “good” and “bad” machining quality. Analytical Hierarchy Process (AHP) combined with the fuzzy comprehensive evaluation technique is used to evaluate the grade condition of the quality in this paper. Considering the fuzziness of the factors, a two-stage fuzzy comprehensive evaluation model is proposed to evaluate the grinding machining quality. In light of different reliable degrees of different kinds of fuzzy operator models, the weighted average method is used. The membership degrees of the evaluation factors are determined by experts’ knowledge and experiences. The factor weights are calculated via the AHP method. Certain synthetic importance of each stage evaluation is presented through weighted sum of the relative important degree. Examples of conventional external grinding machining illustrate the effectiveness of the proposed model.


2012 ◽  
Vol 256-259 ◽  
pp. 3033-3037
Author(s):  
Xue Ying Bao ◽  
Qi Cai Wang

According to the evaluation standard for greening building, an assessment system is proposed to evaluate the green building degree. And the weights of each evaluation index are determined by AHP method. Applying the methods of expert estimations, a fuzzy comprehensive evaluation model is constructed for the building green degree. Combining with living examples, the green degree of a building is calculated based on this method.


2012 ◽  
Vol 485 ◽  
pp. 323-326
Author(s):  
Yan Jie Xu ◽  
Dong Bao Zhao ◽  
Li Wu Chang

In order to quantitatively evaluate the clean degree of coal resources, the evaluation model and the evaluation system are constructed based on multi-factor and multi-hierarchy evaluation index. Two first-tier indexes, five second-tier indexes and sixteen third-tier indexes are adopted according to the content of harmful elements in coal and their toxicity to establish the evaluation index system. The adopted indexes are quantized using statistical mathematical method, and their weights are obtained utilizing the AHP method. Applying the fuzzy mathematics theory, the multi-hierarchy fuzzy comprehensive evaluation model is established, which is a good basement for further conducting the clean degree evaluation of coal resources.


2013 ◽  
Vol 357-360 ◽  
pp. 2913-2916
Author(s):  
Ling Liu ◽  
Tao Zhang

In order to evaluate whether a construction scheme satisfies low-carbon standards fast and simply, this paper firstly improves the AHP method and determines the four evaluation indexes about the low-carbon of construction scheme, established a set of low-carbon construction scheme evaluation index system with high practicality. Then this paper sets up comprehensive evaluation model by using the method of combining AHP with Fuzzy Comprehensive Judgment (FCJ). Finally, the paper tests this model with actual cases, and the result shows the practicality of the model, which is the same as practical approach.


2018 ◽  
pp. 172-182 ◽  
Author(s):  
Shengmin CAO

This paper mainly studies the application of intelligent lighting control system in different sports events in large sports competition venues. We take the Xiantao Stadium, a large­scale sports competition venue in Zaozhuang City, Shandong Province as an example, to study its intelligent lighting control system. In this paper, the PID (proportion – integral – derivative) incremental control model and the Karatsuba multiplication model are used, and the intelligent lighting control system is designed and implemented by multi­level fuzzy comprehensive evaluation model. Finally, the paper evaluates the actual effect of the intelligent lighting control system. The research shows that the intelligent lighting control system designed in this paper can accurately control the lighting of different sports in large stadiums. The research in this paper has important practical significance for the planning and design of large­scale sports competition venues.


2013 ◽  
Vol 756-759 ◽  
pp. 715-719
Author(s):  
Huan Cheng Zhang ◽  
Ya Feng Yang ◽  
Feng Li ◽  
Li Nan Shi

In the College, performance evaluation system is directly related to the harmonious development of the school. Taking into account the factors in the evaluation system is fuzzy, so this paper uses fuzzy comprehensive evaluation model. But the model is too subjective, so this paper combines neural network and data envelopment analysis method, which ensures that fuzzy comprehensive evaluation model is reasonable and scientific, and good school development and teacher self-interest. The performance assessment process, not only enables the combination of qualitative and quantitative analysis, but also fair and reasonably reflect the achievements of teachers, while this method is easy to use, wide application, and can be well applied in practice.


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