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Analysis and mitigation of subsynchronous oscillations in a radially-connected wind farm

机译:径向连接风电场中次同步振荡的分析和缓解

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Subsynchronous oscillations (SSO), especially, subsynchronous resonance are potential problems in series compensated power system. A fixed speed wind farm employing single cage induction generator (IG) and double cage IG connected to series compensated line are prone to SSR problem. This paper presents some investigations on SSO resulting from induction generator effect (IGE) with the wind turbine generator (WTG) modelled either as single cage IG or double cage IG. Eigenvalue analysis is carried out for various levels of series compensation for different sizes of wind farm with varying power outputs. Eigenvalue analysis is validated by the electromagnetic transient simulations using PSCAD/EMTDC software. The possibility of steady state SSR (IGE) and transient SSR is investigated in depth using PSCAD/EMTDC for the modified IEEE first bench mark (MFBM) model. SVC is employed for mitigating SSR. A new voltage regulator (VR) model of SVC is proposed and linear state space model of SVC is developed. Eigenvalue analysis conducted with the proposed voltage regulator reveals that the proposed VR model is more effective in mitigating SSR compared to VR models that are reported in the literature.
机译:次同步振荡(SSO),尤其是次同步谐振是串联补偿电力系统中的潜在问题。使用单笼感应发电机(IG)和双笼IG连接到串联补偿线路的定速风电场很容易出现SSR问题。本文介绍了对感应发电机效应(IGE)产生的SSO的一些研究,其中风力发电机(WTG)建模为单笼IG或双笼IG。针对具有不同功率输出的不同规模的风电场,针对不同级别的串联补偿进行了特征值分析。特征值分析通过使用PSCAD / EMTDC软件的电磁暂态仿真进行了验证。对于改进的IEEE第一基准(MFBM)模型,使用PSCAD / EMTDC深入研究了稳态SSR(IGE)和瞬态SSR的可能性。 SVC用于缓解SSR。提出了一种新的SVC电压调节器模型,并建立了SVC的线性状态空间模型。用提出的稳压器进行的特征值分析表明,与文献报道的VR模型相比,提出的VR模型在减轻SSR方面更有效。

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