In this paper, we analyze the impacts of major electrical properties, including node con-straints, line limits, and flow direction, on vulnerability assessment of power grid usingseveraltypesofelectricalbetweennessmeasures.Specifically,wefirstproposeasetofnewelectricalbetweennessmeasures,whichtakesintoaccountflowdirectioninpowergrids.Then,theimpactsofmajorelectricalpropertiesonvulnerabilityassessmentofpowergridare analyzed by comparing the identification results of critical components based on theproposedelectricalbetweennessmeasureswiththosebasedontheothertwotypesofelec-tricalbetweennessmeasuresreportedintheliterature,whichtakeintoconsiderationnodeconstraintsandlinelimits,respectively.Analysisresultsshowtheimportantimpactofflowdirectionontheidentificationofcriticalcomponents.Theresultsleadustointroduceasetofcombinedelectricalbetweennessmeasuresthattakeintoaccountnodeconstraints,linelimits,andflowdirectiontogether.SimulationresultsontheIEEE300-bussystemandtheItalianpowergridshowthatthecombinedelectricalbetweennessmeasuresaresuperiorinidentifyingcriticalcomponentsandmoreusefulinassessingpowergridvulnerability.
A study of the impacts of flow direction and electrical constraints on vulnerability assessment of power grid using electrical betweenness measures / Wu, Di; Ma, Feng; Javadi, Milad; Thulasiraman, Krishnaiya; Bompard, Ettore; Jiang, John N.. - In: PHYSICA. A. - ISSN 0378-4371. - 466:(2017), pp. 295-309. [10.1016/j.physa.2016.09.029]
A study of the impacts of flow direction and electrical constraints on vulnerability assessment of power grid using electrical betweenness measures
Wu, Di;Bompard, Ettore;
2017
Abstract
In this paper, we analyze the impacts of major electrical properties, including node con-straints, line limits, and flow direction, on vulnerability assessment of power grid usingseveraltypesofelectricalbetweennessmeasures.Specifically,wefirstproposeasetofnewelectricalbetweennessmeasures,whichtakesintoaccountflowdirectioninpowergrids.Then,theimpactsofmajorelectricalpropertiesonvulnerabilityassessmentofpowergridare analyzed by comparing the identification results of critical components based on theproposedelectricalbetweennessmeasureswiththosebasedontheothertwotypesofelec-tricalbetweennessmeasuresreportedintheliterature,whichtakeintoconsiderationnodeconstraintsandlinelimits,respectively.Analysisresultsshowtheimportantimpactofflowdirectionontheidentificationofcriticalcomponents.Theresultsleadustointroduceasetofcombinedelectricalbetweennessmeasuresthattakeintoaccountnodeconstraints,linelimits,andflowdirectiontogether.SimulationresultsontheIEEE300-bussystemandtheItalianpowergridshowthatthecombinedelectricalbetweennessmeasuresaresuperiorinidentifyingcriticalcomponentsandmoreusefulinassessingpowergridvulnerability.Pubblicazioni consigliate
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https://hdl.handle.net/11583/2656448
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