Vulnerability Assessment Method for Cyber Physical Power System Considering Node Heterogeneity

Author(s):  
Bo Wang ◽  
Xunting Wang
2014 ◽  
Vol 1044-1045 ◽  
pp. 503-506
Author(s):  
Yong Sheng Men ◽  
Long Zhe Jin ◽  
Xi Yuan Xu

Grid infrastructure is vulnerable to damage or breakdown by various of natural disasters and man-made disasters to cause a loss of all or parts of the function of power system. In this paper, through the analysis of various factors affecting the hub substation physical vulnerability of hub substation such as human factors, natural disasters and equipment factors, calculate and classifiy the influence degree of each factor on the physical vulnerability. Put forward a series of suitable vulnerability assessment method for China's national hub substation. What’s more, take a specific hub substation for example to verify the assessment methods that provided a basis for safe operation of power facilities and disasters prevention.


2014 ◽  
Vol 986-987 ◽  
pp. 652-655
Author(s):  
Xiao Ren ◽  
Jun Liu ◽  
Ya Fang Wang

. This article is based on the concept of vulnerability for power system, and focuses on vulnerable source of distribution network and summarizes the characteristics of vulnerability assessment methodologies and inadequate for the distribution network.And pointed out that domestic and international research for distribution network vulnerability is still in the initial stages,evaluation of existing methods are accessible only from one side distribution system's security status,the vulnerability assessment methodology of distribution network can be more fully reflected the global distribution network of security that will be researched in the future.


2018 ◽  
Vol 9 (2) ◽  
pp. 777-785 ◽  
Author(s):  
Jiakun Fang ◽  
Chi Su ◽  
Zhe Chen ◽  
Haishun Sun ◽  
Per Lund

Water ◽  
2021 ◽  
Vol 13 (19) ◽  
pp. 2775
Author(s):  
Vladimir Živanović ◽  
Nebojša Atanacković ◽  
Saša Stojadinović

The application of groundwater vulnerability methods has great importance for the sanitary protection zones delineation of karstic sources. Source vulnerability assessment of karst groundwater has mainly relied on the European approach (European Cooperation in Science and Technology—COST action 620), which includes analysis of the K factor, which refers to water flow through the saturated zone of the karst system. In the paper, two approaches to groundwater vulnerability assessment have been applied, COP + K and TDM (Time-Dependent Model) methods, to produce the most suitable source vulnerability map that can be transformed into sanitary protection zones maps. Both methods were tested on the case example of Blederija karst spring in Eastern Serbia. This spring represents a classical karst spring with allogenic and autogenic recharge. Dual aquifer recharge points out the necessity for the inclusion of the vulnerability assessment method created especially for the assessment of karst groundwater. Obtained vulnerability maps show similar results, particularly in the spring and the ponor areas, and these zones are most important for future protection. The COP + K method brings out three vulnerability classes that can be directly transformed into three sanitary protection zones. Contrary to the previous one, the TDM method uses water travel time as a vulnerability degree. The results show that the final map can be easily used to define sanitary zones considering different national legislation.


2013 ◽  
Vol 732-733 ◽  
pp. 882-887
Author(s):  
Yong Chun Su ◽  
Hao Wei Jia

Mid-term stability assessment is an important work to support power system operation in a province power grid of China every year. The stability assessment method and process was introduced in this paper. As an example, the stability of Jiangxi province power system was evaluated in the following two years. Weak area and weak transmission line were found out in each power supply area. Prevention and control measures were proposed. According to problems among the assessment process and using the state monitoring data, an approach was discussed to increase the assessment result accuracy. The analysis conclusion provides the reference to the safe and stable operation of Jiangxi power system.


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