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Modeling of Multi-Pulse VSC Based SSSC and STATCOM
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作者 Pavel Zuniga- Haro juan manuel ramirez 《Journal of Electromagnetic Analysis and Applications》 2010年第3期145-161,共17页
The aim of this paper is to contribute to the dynamic modeling of multi-pulse voltage sourced converter based static synchronous series compensator and static synchronous compensator. Details about the internal functi... The aim of this paper is to contribute to the dynamic modeling of multi-pulse voltage sourced converter based static synchronous series compensator and static synchronous compensator. Details about the internal functioning and topology connections are given in order to understand the multi-pulse converter. Using the 24 and 48-pulse topologies switching functions models are presented. The models correctly represent commutations of semiconductor devices in multi-pulse converters, which consequently allows a precise representation of harmonic components. Additionally, time domain models that represent harmonic components are derived based on the switching functions models. Switching functions, as well as time domain models are carried out in the original abc power system coordinates. Effectiveness and precision of the models are validated against simulations performed in Matlab/Simulink?. Additionally, in order to accomplish a more realistic comparison, a laboratory prototype set up is used to assess simulated waveforms. 展开更多
关键词 Commutations HARMONICS MULTI-PULSE Modeling SSSC STATCOM
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Embedding PV and WF Models into Steady State Studies by an Optimization Strategy
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作者 juan manuel ramirez 《Smart Grid and Renewable Energy》 2011年第3期245-254,共10页
Modeling of photovoltaic (PV) and wind farms (WF) stations to take into account these renewable energies into the power flow formulation are summarized. A strategy based on multi objective optimization in order to all... Modeling of photovoltaic (PV) and wind farms (WF) stations to take into account these renewable energies into the power flow formulation are summarized. A strategy based on multi objective optimization in order to allocate PV and WF power into electrical power system is proposed. It is assumed that there are a reduced number of choices to allocate the stations. The algorithm is applied to the 39-bus test power system. The results show that the proposed algorithm is capable of optimal placement of renewable units. 展开更多
关键词 Distributed Generation (DG) Optimization Photovoltaic ENERGY RENEWABLE ENERGY Smart Grid Wind FARM
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