Parallel computing of multi-contingencyoptimal power flow with transient stabilityconstraints
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    Abstract:

    To deal with the high dimensionality and computational density of the Optimal Power Flow model with Transient Stability Constraints (OTS), a credible criterion to determine transient stability is proposed based on swing curves of generator rotor and the characteristics of transient stability. With this method, the swing curves of all generator rotors will be independent one another. Therefore, when a parallel computing approach based on the MATLAB parallel toolbox is used to handle multi-contingency cases, the calculation speed is improved significantly. Finally, numerical simulations on three test systems including the NE-39 system, the IEEE 300-bus system, and 703-bus systems, show the effectiveness of the proposed method in reducing the computing time of OTS calculation.

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Yude Yang, Anjun Song, Hui Liu, Zhijun Qin, Jun Deng, Junjian Qi. Parallel computing of multi-contingencyoptimal power flow with transient stabilityconstraints[J]. Protection and Control of Modern Power Systems,2018,V3(2):204-213.[Yude Yang, Anjun Song, Hui Liu, Zhijun Qin, Jun Deng, Junjian Qi. Parallel computing of multi-contingencyoptimal power flow with transient stabilityconstraints[J]. Power System Protection and Control,2018,V3(2):204-213]

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  • Received:
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  • Online: August 27,2018
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