严才, 姚伟, 林思齐, 李建兰, 文劲宇, 傅予, 崔岩, 张宇时. 基于等效开环过程的计及主动频率支撑的风火耦合系统次同步振荡分析与抑制[J]. 电网技术, 2022, 46(10): 3881-3892. DOI: 10.13335/j.1000-3673.pst.2021.1773
引用本文: 严才, 姚伟, 林思齐, 李建兰, 文劲宇, 傅予, 崔岩, 张宇时. 基于等效开环过程的计及主动频率支撑的风火耦合系统次同步振荡分析与抑制[J]. 电网技术, 2022, 46(10): 3881-3892. DOI: 10.13335/j.1000-3673.pst.2021.1773
YAN Cai, YAO Wei, LIN Siqi, LI Jianlan, WEN Jinyu, FU Yu, CUI Yan, ZHANG Yushi. Subsynchronous Oscillation Analysis and Suppression of Wind-thermal Coupling System Considering Active Frequency Support Based on Effective Open-loop Process Theorem[J]. Power System Technology, 2022, 46(10): 3881-3892. DOI: 10.13335/j.1000-3673.pst.2021.1773
Citation: YAN Cai, YAO Wei, LIN Siqi, LI Jianlan, WEN Jinyu, FU Yu, CUI Yan, ZHANG Yushi. Subsynchronous Oscillation Analysis and Suppression of Wind-thermal Coupling System Considering Active Frequency Support Based on Effective Open-loop Process Theorem[J]. Power System Technology, 2022, 46(10): 3881-3892. DOI: 10.13335/j.1000-3673.pst.2021.1773

基于等效开环过程的计及主动频率支撑的风火耦合系统次同步振荡分析与抑制

Subsynchronous Oscillation Analysis and Suppression of Wind-thermal Coupling System Considering Active Frequency Support Based on Effective Open-loop Process Theorem

  • 摘要: 为适应可再生能源大规模并网需求,可再生能源需要提供主动频率支撑,但主动频率支撑控制可能会诱发如今普遍存在的风火耦合系统中的次同步振荡。针对该问题,首先基于等效开环过程理论将计及主动频率支撑控制的风火耦合系统各回路进行解耦,得到单输入单输出系统。基于此,提出了一种改进的适用于振荡分析的判据。相比原判据,所提判据能通过特征传递函数对应伯德图的相位特性来判断耦合系统是否发生次同步振荡。通过所提判据判断结果,基于相位补偿原理,提出了相位重塑控制器以提升耦合系统在次同步频率范围内的稳定裕度,避免次同步振荡的发生。最后仿真验证了所提判据的有效性,进一步地,时域仿真与RT-LAB实时仿真结果表明所提次同步振荡抑制策略可在保证耦合系统稳定的前提下达到较好的调频效果。

     

    Abstract: The active frequency support control is generally adopted in the renewable energy to adapt to the large-scale grid connection of renewable energy. However, the active frequency support control may induce the subsynchronous oscillation (SSO) in the wind-thermal coupling system. To address that, a model of the wind-thermal coupling system with active frequency support control is decoupled based on the effective open-loop process theory and equivalent to a single-input single-output system. Then, an improved stability criterion is constructed for SSO analysis. Compared with the original criterion, the proposed criterion is able to judge whether the SSO occurs in the coupling system through the phase characteristics of the Bode diagram based on the characteristic transfer function. According to the judgment results of the proposed criterion and based on the phase compensation principle, a phase reshaping controller is proposed to increase the stability margin of the coupling system within the subsynchronous frequency range. Finally, the validity of the proposed criterion is verified by the time-domain simulation. The time simulation and the RT-LAB simulation results show that the proposed SSO suppression strategy achieves a satisfactory frequency adjustment effect under the premise of ensuring the stability of the wind-thermal coupling system.

     

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