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Frequency Support of Fast-Multi-Energy Storage Systems in Low Rotational Inertia Scenarios

机译:低转动惯量场景下快速多储能系统的频率支持

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Modern power systems are increasing the connection of power electronic converters (PECs), and new inertia-less technologies displace the synchronous generation units. Therefore, the total rotational system inertia is reduced, creating new problems related to the system frequency control and stability. Several mechanisms to enable the PECs with frequency sensible control loops have been proposed in the scientific literature. This paper considers the use of Fast-Acting Power Injections (FAPI), where the frequency-sensible control uses a frequency-active power (f-P) based on proportional and derivative control. The FAPI is obtained from PECs installed in a Fast-Multi-Energy Storage System (F-MESS), it consists of a flywheel storage system and supercapacitor storage system. The objective is to assess the frequency support provided by an F-MESS considering low rotational inertia scenarios. One additional contribution is a full detailed model using a set of differential-algebraic equation (DAE) in order to ensure an appropriate representation of all devices at the time that ensure scalability of the model in order to include new PEC-based technologies. Simulation results demonstrate the positive effect of the use of FAPI controllers in F-MESS to provide frequency support in low inertia scenarios.
机译:现代电力系统正在增加电力电子转换器(PEC)的连接,并且新的无惯性技术取代了同步发电机组。因此,减小了旋转系统的总惯量,从而产生了与系统频率控制和稳定性有关的新问题。在科学文献中已经提出了几种使PEC具有频率敏感控制环路的机制。本文考虑使用快速作用功率注入(FAPI),其中对频率敏感的控制使用基于比例和微分控制的频率有功功率(f-P)。 FAPI是从安装在快速多能量存储系统(F-MESS)中的PEC获得的,它由飞轮存储系统和超级电容器存储系统组成。目的是评估考虑低旋转惯性情况的F-MESS提供的频率支持。另一个贡献是使用一组微分代数方程(DAE)的完整详细模型,以确保同时确保所有设备的适当表示,从而确保模型的可伸缩性,以包括新的基于PEC的技术。仿真结果证明了在F-MESS中使用FAPI控制器为低惯性场景提供频率支持的积极作用。

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