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Subsynchronous Oscillation Characteristic Study of Wind-Thermal Power Bundling And EHV AC-DC Hybrid Transmission System

机译:风热功率捆绑与超高压交直流混合输电系统的次同步振荡特性研究

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There is the risk of subsynchronous oscillations when wind-thermal-bundled power supply delivered through AC transmission line with series capacitance compensation and high voltage DC system. However, the current researches are all aimed at the subsynchronous oscillation of wind-thermal-bundled power supply or AC-DC hybrid transmission, without considering the subsynchronous oscillation of wind farms, thermal power plants, AC transmission system with series capacitance compensation and DC transmission system at the same time. The linearized model of wind-thermal power supply and extreme high voltage (EHV) AC-DC hybrid transmission system is built firstly in this paper and then subsynchronous oscillation mode of system is analyzed by factors related with characteristic values. This study uses characteristic values sensitivity make sure the main influencing factors of subsynchronous oscillation and then analyze the influence of AC-DC transmission power distribution, thermal power and wind power output allocation, wind power control parameters and DC transmission control parameters on subsynchronous oscillation. The correctness of theoretical analysis is verified by the simulation results.
机译:当风热捆绑电源通过带有串联电容补偿和高压直流系统的交流输电线传输时,存在次同步振荡的风险。然而,当前的研究都是针对风热捆绑式电源或AC-DC混合输电的次同步振荡,而不考虑风电场,火电厂,具有串联电容补偿的交流输电系统和直流输电的次同步振荡。系统同时进行。本文首先建立了风热电源与超高压交直流混合输电系统的线性化模型,然后通过与特征值有关的因素分析了系统的次同步振荡模式。本研究利用特征值灵敏度确定次同步振荡的主要影响因素,然后分析交直流输电功率分布,火电和风电输出分配,风电控制参数和直流输电控制参数对次同步振荡的影响。仿真结果验证了理论分析的正确性。

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