DocumentCode :
63159
Title :
Probabilistic Power Flow Analysis With Generation Dispatch Including Photovoltaic Resources
Author :
Miao Fan ; Vittal, Vijay ; Heydt, Gerald T. ; Ayyanar, Raja
Author_Institution :
Dept. of Electr., Comput. & Energy Eng, Arizona State Univ., Tempe, AZ, USA
Volume :
28
Issue :
2
fYear :
2013
fDate :
May-13
Firstpage :
1797
Lastpage :
1805
Abstract :
This paper proposes a novel probabilistic power flow (PPF) algorithm considering generation dispatch. The intent is to examine the influence of uncertainty due to photovoltaic (PV) generation resources and loads. PV generation uncertainty may have a significant impact on transmission systems since this resource is easily influenced by changing environmental conditions. However, it is prudent to include generation dispatch in the PPF algorithm since the dispatching strategy compensates for PV generation injections and influences the uncertainty in the results. The proposed PPF algorithm is based on the cumulant method. The Gram-Charlier expansion is applied to approximate the distribution of probabilistic variables. Furthermore, this paper also proposes a probabilistic optimal power dispatching strategy which considers uncertainty problems in the economic dispatch and optimizes the expected value of the total cost with the overload probability as a constraint. The Arizona area of the Western Electricity Coordinating Council (WECC) system is used to test the proposed PPF algorithm and compare results with Monte Carlo simulation (MCS).
Keywords :
Monte Carlo methods; load flow; photovoltaic power systems; power generation dispatch; power generation economics; power transmission economics; probability; Arizona area; Gram-Charlier expansion; MCS; Monte Carlo simulation; PPF algorithm; PV generation injections; PV generation load; PV generation uncertainty; WECC system; Western Electricity Coordinating Council; changing environmental condition; cumulant method; economic dispatch; generation dispatch; overload probability; photovoltaic generation resources; probabilistic optimal power dispatching strategy; probabilistic power flow analysis; probabilistic variable distribution; transmission systems; Computational modeling; Dispatching; Economics; Generators; Mathematical model; Probabilistic logic; Uncertainty; Cumulant; Gram-Charlier expansion; cumulative distribution function; economic generation dispatch; photovoltaic generation; probabilistic optimal power dispatching strategy; probabilistic power flow; probability density function;
fLanguage :
English
Journal_Title :
Power Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8950
Type :
jour
DOI :
10.1109/TPWRS.2012.2219886
Filename :
6340376
Link To Document :
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