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A Model-Free Approach for Emergency Damping Control Using Wide Area Measurements

机译:使用广域测量的无模型紧急阻尼控制方法

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Rescheduling methods for mitigation of poorly damped power swings depend on a model-based evaluation of eigenvalue sensitivities and are slow to implement. This paper proposes an approach for an online model-free implementation of modulation-type control using Wide Area Measurement System (WAMS). Such a control measure can act as a primary line of defense before the slower rescheduling-type measures are taken. The proposed control measure utilizes special properties of swing modes derived analytically from a simplified system model to 1) synthesize a modal feedback signal as the input to the controller and 2) tune the controller parameters for adequate damping improvement, in a model-independent manner for certain FACTS devices and HVDC links. For a power system stabilizer (damping controller in a synchronous machine excitation system), the extent of model information required is limited to that of the well-known GEPn$(s)$ntransfer function and inertia constant of the concerned synchronous machine. Case studies with detailed system models provide the necessary proof-of-concept.
机译:用于缓解弱阻尼功率摆幅的重新安排方法取决于特征值敏感度的基于模型的评估,并且实施缓慢。本文提出了一种使用广域测量系统(WAMS)在线无模型实现调制类型控制的方法。在采取较慢的重新安排类型的措施之前,这种控制措施可以作为主要防线。拟议的控制措施利用了从简化的系统模型解析得出的摆动模式的特殊特性,以:1)合成模态反馈信号作为控制器的输入,以及2)以与模型无关的方式对控制器参数进行调整,以充分改善阻尼,从而某些FACTS设备和HVDC链接。对于电力系统稳定器(同步电机励磁系统中的阻尼控制器),所需模型信息的范围限于众所周知的GEPn $(s)$ n传递函数和惯性常数。具有详细系统模型的案例研究提供了必要的概念证明。

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