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Dynamic Stability Improvement of an Integrated Grid-Connected Offshore Wind Farm and Marine-Current Farm Using a STATCOM

机译:使用STATCOM改善海上风电场和海流并网发电系统的动态稳定性

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This paper presents a control scheme based on a static synchronous compensator (STATCOM) to achieve both voltage control and damping enhancement of a grid-connected integrated 80-MW offshore wind farm (OWF) and 40-MW marine-current farm (MCF). The performance of the studied OWF is simulated by an equivalent doubly-fed induction generator (DFIG) driven by an equivalent wind turbine (WT) while an equivalent squirrel-cage rotor induction generator (SCIG) driven by an equivalent marine-current turbine (MCT) is employed to simulate the characteristics of the MCF. A damping controller of the STATCOM is designed by using modal control theory to contribute effective damping characteristics to the studied system under different operating conditions. A frequency-domain approach based on a linearized system model using eigenvalue techniques and a time-domain scheme based on a nonlinear system model subject to various disturbances are both employed to simulate the effectiveness of the proposed control scheme. It can be concluded from the simulated results that the proposed STATCOM joined with the designed damping controller is very effective to stabilize the studied system under disturbance conditions. The voltage fluctuations of the AC bus subject to the active-power variations of the studied system can also be effectively controlled by the proposed control scheme.
机译:本文提出了一种基于静态同步补偿器(STATCOM)的控制方案,以实现并网集成式80兆瓦海上风电场(OWF)和40兆瓦海流电厂(MCF)的电压控制和阻尼增强。所研究的OWF的性能是由等效风力涡轮机(WT)驱动的等效双馈感应发电机(DFIG)以及等效风力发电机(MCT)驱动的等效鼠笼式转子感应发电机(SCIG)来模拟的)用于模拟MCF的特性。利用模态控制理论设计了STATCOM的阻尼控制器,以在不同的工作条件下为所研究的系统提供有效的阻尼特性。均采用基于特征值技术的线性化系统模型的频域方法和基于受到各种干扰的非线性系统模型的时域方案,以模拟所提出的控制方案的有效性。从仿真结果可以得出结论,所提出的STATCOM与设计的阻尼控制器相结合对于在扰动条件下稳定所研究的系统非常有效。通过所提出的控制方案,也可以有效地控制受研究系统有功功率变化影响的交流母线电压波动。

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