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Embedding PV and WF Models into Steady State Studies by an Optimization Strategy

Embedding PV and WF Models into Steady State Studies by an Optimization Strategy
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摘要 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. 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.
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出处 《Smart Grid and Renewable Energy》 2011年第3期245-254,共10页 智能电网与可再生能源(英文)
关键词 Distributed Generation (DG) Optimization Photovoltaic ENERGY RENEWABLE ENERGY Smart Grid Wind FARM Distributed Generation (DG) Optimization Photovoltaic Energy Renewable Energy Smart Grid Wind Farm
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