Power Grid Emergency Management Capability Assessment Based on the Fuzzy-AHP Comprehensive Evaluation

2015 ◽  
Vol 1092-1093 ◽  
pp. 429-433 ◽  
Author(s):  
Jia Xiong Wei ◽  
Ding Li Yang ◽  
Peng Hui Du ◽  
Pu Yu He

According to the characteristics of power emergencies and integrating the realities of grid emergency management, the paper established grid emergency management capability evaluation indexes system, which is consist of 1 first grade indexe,15 second grade indexes. First, the paper determined the weight of each index with AHP and then evaluated the indexes system by fuzzy comprehensive evaluation in two levels. In numerical example, the paper took a provincial grid company emergency management capability assessment as an example, obtained scientific analysis results, proved the usefulness of the evaluation system, and pointed a clear direction for the grid companies’ emergency management construction in the future.

2013 ◽  
Vol 859 ◽  
pp. 511-514 ◽  
Author(s):  
Jing Jing Wan ◽  
Ying Hua Song

This paper has put forward a comprehensive assessment model of the emergency management capability of the coal mine accidents which is based on AHP and fuzzy comprehensive evaluation, and has made an empirical analysis. Firstly, the meaning and the key contents of the emergency management capability of coal mine accidents was elaborated. Secondly, the comprehensive evaluation index system of coal mine accidents emergency management capability was established. And then, the first class index weights were determined by AHP. Finally, this paper made a comprehensive evaluation of a certain regions emergency management capability of coal mine accidents by means of the fuzzy comprehensive evaluation.


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.


2021 ◽  
Vol 26 (5) ◽  
pp. 699-712
Author(s):  
Yimin Su ◽  
Lin Wang

AbstractAutonomous vehicles must pass effective standard tests to verify their reliability and safety. Accordingly, it is very important to establish a complete scientific test and evaluation system for autonomous vehicles. A comprehensive framework incorporating the design of test scenarios, selection of evaluation indexes, and establishment of an evaluation system is proposed in this paper. The aims of the system are to obtain an objective and quantitative score regarding the intelligence of autonomous vehicles, and to form an automated process in the future development. The proposed framework is built on a simulation platform to ensure the feasibility of the design and implementation of the test scenarios. The design principle for the test scenarios is also presented. To reduce subjective influences, the proposed framework selects objective indexes from four aspects: safety, comfort, driving performance, and standard regulations. The order relation analysis method is adopted to formulate the index weights, and fuzzy comprehensive evaluation is used to quantify the scores. Finally, a numerical example is provided to visually demonstrate the evaluation results for the autonomous vehicles scored by the proposed framework.


2013 ◽  
Vol 423-426 ◽  
pp. 2930-2933
Author(s):  
Cong Jun Rao

The level and status of disciplines are the important indexes in universities. The evaluation of multiple disciplines plays an important role in the disciplines development. This paper mainly studied the problem of disciplines evaluation in higher education. Firstly, it established the evaluation index system with eight first-grade evaluation indexes, i.e., discipline construction, teaching award, research funding, the scientific research achievement award, team construction, scientific research, talent training, and initial investment, and then used the method of Analytic Hierarchy Process (AHP) to solve the weight of each index. Thirdly, it established a disciplinary evaluation model based on fuzzy comprehensive evaluation method, and analyzed the rationality of the model. The study in this paper provides a new way for the evaluation of university disciplines.


2013 ◽  
Vol 807-809 ◽  
pp. 262-267
Author(s):  
Xing Ju Shen

Whether construction and development of artificial ecological recreation site are successful is based upon its attraction to tourist, comprehensive evaluation on attraction of recreation site is an important section of construction of recreation site, hence it is very necessary to establish evaluation system of artificial ecological recreation site and to make objective evaluation on attraction of artificial ecological recreation site. Artificial ecological recreation site is taken as sample in this paper, natural and social factors influencing its emergence and development are considered fully, evaluation factors which embody feature of ecological recreation site such as ecology, sustainability, appearance and etc are selected specially, and an index system of evaluation on artificial ecological recreation site is established composed of 3 first-grade indexes, 10 second-grade indexes and 28 third-grade indexes involving recreational resource, recreational support, as well as regional and location condition of recreation site. The aim is to throw a sprat in order to catch a herring, so as to promote in-depth research and development of ecological recreation site.


2014 ◽  
Vol 644-650 ◽  
pp. 2611-2614
Author(s):  
Zhi Yu Gao ◽  
Xin Juan Sun

This paper according to the actual situation of the Liaohe river basin, and from its physical characteristics , impact on social economy, natural environment, ecological environment build the evaluation database including fourteen evaluation indexes,and then combine with the Fuzzy-AHP algorithm build the comprehensive evaluation modelin. For different scheduling scenarios, and give a set of scheduling scheme and realize the evaluation system which can protect the water feature, improve and regulate the water environmental capacity.


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