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Estimation of Power Imbalance Size with Consideration of Impact of Emulated Inertia

机译:考虑惯性影响的功率不平衡量估计

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Accurate estimation of power imbalance (e.g. loss of generation size) during frequency disturbance events is of vital importance for effective power system monitoring and control. Conventional methods for power imbalance estimation are mainly based on the swing equation, where the size of power imbalance is calculated using the measured Rate of Change of Frequency (RoCoF) and the inertia level of the system. With the increasing penetration of renewable generation, the system inertia has decreased significantly. Inertia emulation is considered as a promising solution for enhancing frequency stability in future power systems. However, the emulated inertia, acting in a similar manner of true inertia, could have an impact on the measured RoCoF, which will subsequently affect the accuracy of the power imbalance estimation using conventional methods. Therefore, this paper presents a comprehensive evaluation of the impact of such emulated inertial response on the RoCoF behaviour during frequency disturbances, thus the impact on the accuracy of power imbalance estimation. A new power imbalance estimation method that takes into account of the impact of emulated inertia is proposed. Case studies using both an analytical model and a microgrid model simulated in a real-time simulator are presented, which demonstrate that the proposed power imbalance estimation method could achieve significantly higher estimation accuracy compared to conventional methods, thus offering an effective solution for estimating frequency disturbance sizes in systems with emulated inertia.
机译:准确估计频率扰动事件期间的功率不平衡(例如,发电量损失)对于有效监视和控制电力系统至关重要。功率不平衡估计的常规方法主要基于摆动方程,其中功率不平衡的大小是使用测得的频率变化率(RoCoF)和系统的惯性水平来计算的。随着可再生能源发电的普及,系统惯性已大大降低。惯性仿真被认为是增强未来电力系统频率稳定性的有前途的解决方案。然而,以类似真实惯性的方式起作用的仿真惯性可能会对测得的RoCoF产生影响,随后将影响使用常规方法进行的功率不平衡估计的准确性。因此,本文对这种模拟惯性响应对频率扰动期间RoCoF行为的影响进行了全面评估,从而对功率不平衡估计的准确性产生了影响。提出了一种新的功率不平衡估计方法,该方法考虑了模拟惯性的影响。提出了使用分析模型和在实时模拟器中模拟的微电网模型的案例研究,这表明与常规方法相比,所提出的功率不平衡估计方法可以实现更高的估计精度,从而为估计频率扰动提供了有效的解决方案。具有模拟惯性的系统中的尺寸。

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