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Analysis of subsynchronous oscillation characteristics of hybrid-based wind farm connected with fixed series compensation system

机译:固定系列补偿系统连接混合式风电场的杂交风电场的分析

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With the rapid development of new energy, the problem of power oscillation caused by large-scale wind farm access system has become increasingly prominent, such as the subsynchronous resonance between doubly-fed induction generator (DFIG) and fixed series compensation, which threatening the security and stability of the system seriously. Since there may not be a single type of wind turbine in the same wind farm, this paper aims to clarify whether there is interaction between different types of wind turbines in the wind farm, thus focuses on the subsynchronous oscillation (SSO) of a system that including DFIG based wind farm, direct-drive permanent magnet synchronous generator (PMSG) based wind farm and fixed series compensation. A linearization model of hybrid-based wind farm is established to analyze the influence of wind farm proportion, control parameters on the operation stability of the system. Based on the dynamic impedance model of hybrid-based wind farm, the mechanism of SSO is further revealed. A time-domain simulation model is built in EMTDC / PSCAD to verify the correctness and effectiveness of the theoretical analysis.
机译:随着新能源的快速发展,大型风电场接入系统引起的电力振荡问题变得越来越突出,例如双馈感应发电机(DFIG)和固定系列补偿之间的子同步共振,威胁到安全性并认真对系统的稳定性。由于在同一风电场中可能没有单一类型的风力涡轮机,因此本文旨在阐明风电场中不同类型风力涡轮机之间是否存在相互作用,从而侧重于系统的子同步振荡(SSO)包括基于DFIG的风电场,直驱永磁同步发电机(PMSG)的风电场和固定系列补偿。建立了一种混合式风电场的线性化模型,分析了风电场比例,控制参数对系统操作稳定性的影响。基于杂交的风电场的动态阻抗模型,进一步揭示了SSO的机制。在EMTDC / PSCAD中构建了一个时域仿真模型,以验证理论分析的正确性和有效性。

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