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Optimal power flow tool for mixed highvoltage alternating current and high-voltage direct current systems for grid integration of large wind power plants

机译:用于大型风力发电厂并网的混合高压交流和高压直流系统的最优潮流工具

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摘要

This study presents a tool for solving optimal power flows (OPFs) in hybrid high-voltage direct current (HVDC) and high-voltage alternating current (HVAC) systems for grid integration of large wind power plants, located either offshore or onshore. The OPF departs from the assumption that the power being produced from the wind power plants is known, as well as the demand from the AC grid. To model the interaction between the DC and AC grids, the active power conservation is expressed between the AC side and DC side of each converter, taking into consideration converter losses (modelled as a second-order polynomial). The tool developed determines the voltages and the active and reactive power in each bus and branch that ensure the selected objective function. All the electrical variables are limited. Moreover, the currents flowing in each DC and AC branch are also limited. The maximum AC voltage that can be applied by the converters is also limited. To develop the tool, both HVDC and HVAC grids need to be represented appropriately through its impedances and admittances. The tool has been implemented through MATLAB® optimisation toolbox and through a more specific optimisation software GAMS®, leading to the same results for the study case presented.
机译:这项研究提出了一种工具,用于解决位于海上或陆上的大型风力发电厂的电网集成中的混合高压直流电(HVDC)和高压交流电(HVAC)系统中的最佳功率流(OPF)。 OPF有别于假设风力发电厂产生的功率以及交流电网的需求已知的假设。为了对直流电网和交流电网之间的相互作用进行建模,需要考虑转换器损耗(建模为二阶多项式),在每个转换器的交流侧和直流侧之间表达有功功率守恒。开发的工具确定确保所选目标功能的每个母线和支路中的电压以及有功和无功功率。所有电气变量均受限制。而且,在每个DC和AC分支中流动的电流也受到限制。转换器可以施加的最大交流电压也受到限制。要开发该工具,HVDC和HVAC电网都需要通过其阻抗和导纳来适当表示。该工具已通过MATLAB®优化工具箱和更具体的优化软件GAMS®实施,从而为所介绍的研究案例提供了相同的结果。

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