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Stochastic congestion management considering power system uncertainties

M Esmaili, +2 more
- 10 Mar 2010 - 
- Vol. 6, Iss: 1, pp 36-47
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TLDR
In this article, a stochastic programming framework is proposed for congestion management considering the power system uncertainties, where the uncertainty sources consist of contingencies of generating units and branches as well as load forecast errors.
Abstract
Congestion management in electricity markets is traditionally done using deterministic values of power system parameters considering a fixed network configuration. In this paper, a stochastic programming framework is proposed for congestion management considering the power system uncertainties. The uncertainty sources that are modeled in the proposed stochastic framework consist of contingencies of generating units and branches as well as load forecast errors. The Forced Outage Rate of equipment and the normal distribution function to model load forecast errors are employed in the stochastic programming. Using the roulette wheel mechanism and Monte-Carlo analysis, possible scenarios of power system operating states are generated and a probability is assigned to each scenario. Scenario reduction is adopted as a tradeoff between computation time and solution accuracy. After scenario reduction, stochastic congestion management solution is extracted by aggregation of solutions obtained from feasible scenarios. Congestion management using the proposed stochastic framework provides a more realistic solution compared with the deterministic solution by a reasonable uncertainty cost. Results of testing the proposed stochastic congestion management on the 24-bus reliability test system indicate the efficiency of the proposed framework.

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References
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Book

Reliability Evaluation of Power Systems

TL;DR: In this paper, the authors present an analysis of the IEEE Reliability Test System (IRTS) and evaluate the reliability worth of the test system with Monte Carlo simulation and three-order equations for overlapping events.
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Stochastic Security-Constrained Unit Commitment

TL;DR: Numerical simulations indicate the effectiveness of the proposed approach for solving the stochastic security-constrained unit commitment and introduce the scenario reduction method for enhancing a tradeoff between calculation speed and accuracy of long-term SCUC solution.
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TL;DR: A new solution to the thermal unit-commitment (UC) problem based on an integer-coded genetic algorithm (GA) that achieves significant chromosome size reduction compared to the usual binary coding.
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Congestion management in competitive power market : A bibliographical survey

TL;DR: In this paper, the authors present papers/literature on congestion management issues in the deregulated electricity markets and refer to 211 citations referenced in this bibliography and the general electronic web sites and the web sites dealing with the issue of congestion management are also listed.
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