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Integrated Optimal Siting and Sizing for VSC-HVDC-link-based Offshore Wind Farms and Shunt Capacitors

机译:基于VSC-HVDC-Link的离岸风电场和分流电容的集成最佳选址和尺寸

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摘要

It is economic and secure to determine the optimal siting and sizing of the offshore wind farms (OWFs) integrated into the AC system through voltage-source converter high-voltage direct current (VSC-HVDC) links. In this paper, an integrated planning model for the VSC-HVDC-link-based OWFs and the capacitors is proposed, where a decomposition technique is presented to solve the proposed mixed-integer nonlinear programming (MINLP) problem and obtain the optimal solution. This model can optimize the siting and sizing of the OWFs to improve the voltage profile and reduce the adverse influence of the reactive power of the OWFs. With the proposed planning model, the total investment costs, operation costs and maintenance costs of the OWFs, VSC-HVDC links, and the capacitors can be minimized. Simulations on the modified IEEE 118-bus system show that the proposed integrated planning model can provide more economic scheme than the independent planning scheme, in which the capacitors are planned after the OWFs. Besides, a series of sensitivity analysis on certain equipment costs are studied to obtain the regular pattern for sizing VSC stations.
机译:通过电压源转换器高压直流(VSC-HVDC)链路,确定近海风电场(OWFS)的最佳选址和尺寸是经济和安全的。在本文中,提出了一种基于VSC-HVDC链路的OWF和电容器的集成规划模型,其中提出了一种分解技术以解决所提出的混合整数非线性编程(MINLP)问题并获得最佳解决方案。该模型可以优化OWF的选址和尺寸,以改善电压曲线并降低OWF的无功功率的不利影响。通过拟议的规划模型,OWF的总投资成本,运营成本和维护成本,可以最大限度地减少电容器,VSC-HVDC链路和电容器。改进的IEEE 118总线系统的模拟表明,所提出的综合规划模型可以提供比独立规划方案更经济的方案,其中电容器在OWF后计划。此外,研究了关于某些设备成本的一系列敏感性分析,以获得尺寸尺寸VSC站的规则模式。

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