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Coordinated Supplementary Damping Control of DFIG and PSS to Suppress Inter-Area Oscillations with Optimally Controlled Plant Dynamics

机译:DFIG和PSS的协同辅助阻尼控制,以最优控制的植物动力学抑制区域间的振荡

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This paper proposes a design method to coordinate dual-channel supplementary damping controllers (SDCs) of doubly-fed induction generators (DFIGs) and power system stabilizers (PSSs) for suppression of inter-area power oscillations. A dynamic performance index is introduced to measure the dynamics of the conventional synchronous generator (SG) and DFIG during the damping control process. Hence, the proposed method designing the PSS and SDC is formulated as an optimization problem with the objective function being the sum of weighted performance indexes and the constraints indicating the requirements on the damping of the inter-area modes. Solving the optimization problem can obtain the optimal SDC and PSS which can meet the required damping results as well as optimize dynamics of the controlled plants. Moreover, by adjusting weights in the objective function, the damping control burden can be flexibly and feasibly allocated between active and reactive power channels of DFIGs or among the damping controllers. Simulations with the modified New England and New York interconnected system prove that the proposed optimization based tuning method can not only robustly coordinate the PSS and SDC to effectively damp inter-area oscillations but also improve the dynamics of controlled plants during the damping control process over different operat-ng conditions.
机译:本文提出了一种设计方法,用于协调双馈感应发电机(DFIG)和电力系统稳定器(PSS)的双通道辅助阻尼控制器(SDC),以抑制区域间功率振荡。引入动态性能指标来测量传统的同步发电机(SG)和DFIG在阻尼控制过程中的动态。因此,提出的设计PSS和SDC的方法被公式化为一个优化问题,其目标函数是加权性能指标和约束之间的总和,这些约束表明对区域间模式的阻尼要求。解决优化问题可以获得能够满足所需阻尼结果的最佳SDC和PSS,并优化受控设备的动力学。此外,通过在目标函数中调整权重,可以灵活而可行地在DFIG的有功和无功功率通道之间或在阻尼控制器之间分配阻尼控制负担。修改后的新英格兰和纽约互连系统的仿真证明,所提出的基于优化的调整方法不仅可以稳健地协调PSS和SDC以有效地阻尼区域间的振荡,而且还可以改善在不同阻尼控制过程中受控植物的动态。操作条件。

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