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A Novel Method of Frequency Regulation in Microgrid

机译:微电网频率调节的一种新方法

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Owing to generation and demand mismatch, the frequency deviation and the rate of change of frequency (RoCoF) may become drastic at times in an islanded microgrid. This is due to increased penetration of noninertial renewable energy sources that brings down the system's resilience to any kind of disturbance. Therefore, efficient control algorithms are required to mimic the inertial behavior of a conventional synchronous machine to arrest/limit any sudden change. This work focuses on frequency regulation of microgrid during transient conditions by means of fast-responding external energy reserve. The characteristics of a weak grid has been studied and simulated through modeling a virtual synchronous machine. An inverter model is also developed to integrate the energy storage system (ESS) to the grid and a double second-order generalized integrator phase locked loop (DSOGI-PLL) is implemented that is capable of synchronizing the system under distorted and unbalanced situation. A new technique to estimate the frequency of the microgrid is reported. A simple proportional controller-based approach for different level of pulsed power injection (using ultracapacitors and batteries) is proposed and simulated using MATLAB. Experimental demonstration is made using batteries only but with two different current-limits. The controller is implemented using dSPACE1103.
机译:由于发电和需求不匹配,有时在孤岛微电网中,频率偏差和频率变化率(RoCoF)可能会急剧增加。这是由于非惯性可再生能源的渗透增加,导致系统对任何类型干扰的适应能力下降。因此,需要有效的控制算法来模仿常规同步电机的惯性行为,以阻止/限制任何突然的变化。这项工作着眼于通过快速响应的外部能量储备在瞬态条件下微电网的频率调节。通过对虚拟同步机建模,研究并模拟了弱电网的特性。还开发了一个逆变器模型,以将储能系统(ESS)集成到电网,并实现了一个双二阶广义积分器锁相环(DSOGI-PLL),它能够在失真和不平衡的情况下使系统同步。报告了一种估计微电网频率的新技术。提出了一种基于比例控制器的简单方法,用于不同水平的脉冲功率注入(使用超级电容器和电池),并使用MATLAB进行了仿真。仅使用电池但有两个不同的电流限制进行实验演示。该控制器是使用dSPACE1103实现的。

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