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Suppressing Subsynchronous Oscillation in Wind-Thermal-Bundled Power System via Flexible Excitation System

机译:通过柔性励磁系统抑制风热捆绑电力系统中的子同步振荡

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Wind-thermal-bundled power system is widely applied to solve the grid interconnection of wind farms, but it brings the high risk of subsynchronous oscillation (SSO) which is a threat to turbo generator and the stability of system. Conventional static excitation system uses Supplementary Excitation Damping Control (SEDC) to suppress SSO, but the response time is limited by the excitation winding time constant. Besides SEDC, flexible excitation system can provide an extra damping channel controlled by Subsynchronous Damping Controller (SSDC). This paper proposes a novel SSDC and its corresponding control method for flexible excitation system. Then the effect of SSDC is analyzed by complex torque coefficient method. Finally, the oscillation suppression effect of SEDC, SSDC and SEDC together with SSDC are compared by simulation with PSCAD/EMTDC.
机译:风热捆绑电源系统广泛应用于解决风电场的电网互连,但它带来了对涡轮发电机的威胁和系统稳定性的逆向振荡(SSO)的高风险。传统的静态激励系统使用补充激励阻尼控制(SEDC)来抑制SSO,但响应时间受激励绕组时间常数限制。除SEDC外,柔性励磁系统还可以提供由离子管阻尼控制器(SSDC)控制的额外阻尼通道。本文提出了一种新型SSDC及其对柔性激励系统的相应控制方法。然后通过复扭矩系数法分析SSDC的效果。最后,通过使用PSCAD / EMTDC模拟比较了SEDC,SSDC和SEDC与SSDC的振荡抑制效果。

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