Uncertainty in power systems analysis

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2012
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Abstract
This thesis focuses on uncertainty analysis in two areas in power system operations, which may encounter uncertainty in the model. First, the Probabilistic Power Flow (PPF) prob­lem is introduced where uncertainty is involved in demand or available generation. By employing Latin Supercube Sampling (LSS) the distribution of output variables in the PPF is estimated. A bin-by-bin histogram comparison is used to efficiently compare the perfor­mance of the LSS with other techniques. Second, a Chance Constrained Optimization (CCO) is presented to handle uncertainty in control of transmission voltages. A control scheme is proposed using steady-state system model to achieve the goal of on-line voltage control and prevent long-term voltage instabil­ity. In order to model steady-state system response, the long-term model of governors and automatic voltage regulators are employed in the control scheme.
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Bibliography: p. 117-130
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Citation
Hajian, M. (2012). Uncertainty in power systems analysis (Doctoral thesis, University of Calgary, Calgary, Canada). Retrieved from https://prism.ucalgary.ca. doi:10.11575/PRISM/4773
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