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Adaptive passivity-based control of a TCSC for the power system damping improvement of a PMSG based offshore wind farm

机译:TCSC的自适应无源控制,用于改进基于PMSG的海上风电场的电力系统阻尼

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This paper proposes the adaptive passivity-based control of a thyristor controlled series capacitor (TCSC) for damping improvement of a permanent-magnet synchronous generator (PMSG) based offshore wind farm (OWF) fed to a one-machine infinite-bus (OMIB) system. The passivity-based control (PBC) is an energy-based approach whose aim is to render the closed-loop system passive with a given storage function. However, the standard PBC requires an accurate model to passivize the system, which is not realistic, in practise, as the active-power of PMSG based OWF is unknown because of the time-varying turbulent wind power inputs. By defining the system perturbation to represent the combinatorial effect of the model uncertainties and external disturbances, we designed a high-gain state and perturbation observer (HGSPO) to estimate the perturbation and angular speed, which are used as part of the adaptive passivity-based control (APBC) system. Simulation studies verify that the proposed approach can render better damping performance with only one state measurement.
机译:本文提出了基于可控性的无源控制的可控硅串联电容器(TCSC),以改善基于永磁同步发电机(PMSG)的海上风电场(OWF)的单机无穷大(OMIB)的阻尼。系统。基于无源性的控制(PBC)是一种基于能量的方法,其目的是使闭环系统具有给定的存储功能而无源。然而,标准的PBC需要一个精确的模型来钝化系统,这在实践中是不现实的,因为基于PMSG的OWF的有功功率由于湍流风力输入的时变而未知。通过定义系统扰动来表示模型不确定性和外部干扰的组合效应,我们设计了一个高增益状态和扰动观测器(HGSPO)来估计扰动和角速度,它们用作基于自适应无源性的一部分控制(APBC)系统。仿真研究证明,所提出的方法仅通过一种状态测量就可以提供更好的阻尼性能。

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