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Generalized Injection Shift Factors

delete2017-09-01
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OA
AI
Y
Yu Christine Chen *
S
Sairaj V. Dhople
A
Alejandro D. Domínguez-García
P
Peter W. Sauer
DOI:10.1109/TSG.2016.2514479delete
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Abstract

Abstract

En 中文
Generalized injection shift factors (ISFs) are the sensitivities of active-power line flows to active-power bus injections. They are computed without designating an artifactual slack bus in the power network; therefore, conceptually, they reflect sensitivities of power flows more accurately than conventional ISFs, the values of which depend on the choice of the slack bus. This paper derives analytical closed-form expressions for generalized ISFs from a perturbative analysis of the ac circuit equations. In addition, they are computed from a system of linear equations that arise from high-frequency synchronized measurements collected from phasor measurement units. As an application, generalized ISFs are used to predict active-power line flows during the transient period following a contingency by leveraging inertial and governor power flows over appropriate time horizons.
Keywords:
Distribution factor
injection shift factor
monitoring
phasor measurement units
sensitivity
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Journal

IEEE Transactions on Smart Grid cover
IEEE Transactions on Smart Grid
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University of Minnesota Twin Cities
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University of British Columbia
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