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Synchronous Resonant Control Technique to Address Power Grid Instability Problems Due to High Renewables Penetration

机译:同步谐振控制技术解决可再生能源渗透率高导致的电网不稳定问题

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摘要

This paper presents a synchronous resonant control strategy based on the inherent characteristics of permanent magnet synchronous generators (PMSG) for the control of power converters to provide stable operating conditions for the power grid under high penetration of renewable energy resources (RERs). The proposed control technique is based on the small signal linearization of a dynamic model with grid specifications, load-current-based voltages, and power converter currents. A combination of the linearized dynamic model with the PMSG swing equation and resonant controller leads to a control technique with synchronous features and appropriate inertia for the control of converter-based power generators. As the main contribution of this work, an extra functionality is proposed in the control loop of the proposed model to solve the inherent inconveniences of conventional synchronous generators. Also, a comprehensive collaboration between interfaced converter specifications and PMSG features is achieved as another contribution of the proposed control technique, and this can guarantee accurate performance under various conditions. A current perturbation curve is introduced to assess the variations of the grid frequency and voltage magnitude under operation of the interfaced converters controlled by the proposed control technique. Moreover, by taking into account the load-based voltages, the effects of the current perturbation components are investigated. The proposed model is simulated in MATLAB/Simulink environment to verify the high performance of the proposed control technique over the other existing control methods.
机译:本文提出了一种基于永磁同步发电机(PMSG)固有特性的同步谐振控制策略,用于控制功率转换器,以在可再生能源(RER)高度渗透的情况下为电网提供稳定的运行条件。所提出的控制技术基于具有电网规格,基于负载电流的电压和功率转换器电流的动态模型的小信号线性化。线性化动态模型与PMSG摆动方程和谐振控制器的结合,导致了一种具有同步功能和适当惯性的控制技术,用于控制基于转换器的发电机。作为这项工作的主要贡献,在提出的模型的控制回路中提出了一个额外的功能,以解决传统同步发电机固有的不便之处。此外,接口转换器规范和PMSG功能之间的全面协作是所提出的控制技术的另一项贡献,并且可以保证在各种条件下的准确性能。引入了电流扰动曲线,以评估由所提出的控制技术控制的接口转换器在运行时电网频率和电压幅值的变化。此外,通过考虑基于负载的电压,研究了电流扰动分量的影响。在MATLAB / Simulink环境中对提出的模型进行了仿真,以验证提出的控制技术相对于其他现有控制方法的高性能。

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