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Enhanced Frequency Control Method for Microgrid-Connected Flywheel Energy Storage System

机译:微电网连接飞轮储能系统的增强频率控制方法

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摘要

Flywheel energy storage system (FESS) can be used for frequency regulation in microgrids. In this article, an enhanced frequency control system is presented for FESS to reduce the frequency variations of microgrid. A three-layer control system is proposed for machine-side converter of the FESS including dc-link voltage controller, speed controller, and field-oriented control system. Unlike the conventional control methods, in the proposed method, the frequency controller is implemented in the grid-side converter to increase the ramp rate of the FESS and reduce the frequency deviation against load changes. Also, the proposed three-layer control system of the machine-side converter reduces the dc-link voltage variations. Furthermore, a mode coordination system is proposed to reduce the dc-link voltage variations when the operation mode of FESS changes from flywheel speed control mode to the microgrid frequency control mode. To demonstrate the advantageous of the proposed method in comparison to the conventional method, at first, the linearized model of the FESS in microgrid is extracted, and then the small-signal analysis is carried out for optimal design of proportional integral (PI) controllers. Two control strategies are theoretically presented and experimentally compared in a prototype microgrid including a diesel generator emulator and a load emulator. The frequency control system is studied in different loading conditions. Experimental results verify the theoretical concepts proposed in this article, and show the superiority of the proposed method over the conventional method.
机译:飞轮储能系统(FESS)可用于微电网中的频率调节。在本文中,呈现增强的频率控制系统以减少微电网的频率变化。提出了一个三层控制系统,用于驻塞的机器侧转换器,包括DC-Link电压控制器,速度控制器和面向现场的控制系统。与传统的控制方法不同,在该方法中,频率控制器在电网侧转换器中实现,以增加FES的斜坡率并降低频率偏差以降低负载变化。而且,所提出的机器侧转换器的三层控制系统降低了DC连杆电压变化。此外,提出了一种模式协调系统,以减少当FES的操作模式从飞轮速度控制模式改变到微电网频率控制模式时的DC-LINK电压变化。为了展示所提出的方法与传统方法相比,首先提取微电网中的FES的线性化模型,然后对比例积分(PI)控制器的最佳设计进行小信号分析。在包括柴油发电机仿真器和负载仿真器的原型微栅格中理论上呈现和实验地显示了两个控制策略。在不同的装载条件下研究了频率控制系统。实验结果验证了本文提出的理论概念,并以常规方法显示了所提出的方法的优越性。

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