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Enhancement of Stabilizing Performance of a Microgrid Using Energy Storage System with Under Frequency Relay

机译:利用欠频继电器储能系统提高微电网的稳定性能

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This paper presents a method to enhance the stabilizing performance of a microgrid using an energy storage system (ESS) with under frequency (UF) relay. A microgrid is considered as a small-scale power grid that involves generation, distribution and energy storage systems operating independently from the main grid. Typically, a microgrid uses renewable energy to produce electricity as a main source. Due to the uncertain generation of power from renewable supply in a microgrid, the controlling of power balance between supply and demand of a microgrid is difficult in the islanded operation mode. When a microgrid is subjected to a large disturbance, the frequency of a microgrid may change rapidly due to the low inertia present in a microgrid. It is essential to maintain the frequency of a microgrid within acceptable ranges, particularly in islanded mode. Therefore, utilizing an ESS with UF relay gives benefits in maintaining and stabilizing the frequency effectively. In this paper, a system identification technique is applied to a microgrid to formulate a mathematical model systematically. Then, with the obtained identified model, the robust controller of an ESS can be designed by using H-infinity loop shaping procedure (HLSP). The application of such ESS with the appropriate load shedding by UF relay is also proposed. The proposed study system is implemented on DIgSILENT PowerFactory and MATLAB software. The obtained simulation results demonstrate that the stabilizing performance of frequency in a microgrid is more effective in terms of smaller frequency deviations, faster responses and minimum load shedding when collaborative ESS control and appropriate load shedding with UF relay are used.
机译:本文提出了一种使用带有欠频(UF)继电器的储能系统(ESS)来增强微电网稳定性能的方法。微电网被认为是一种小型电网,涉及独立于主电网运行的发电,配电和储能系统。通常,微电网使用可再生能源发电作为主要来源。由于微电网中来自可再生供应的不确定的电力产生,因此在孤岛操作模式中难以控制微电网的供需之间的功率平衡。当微电网受到较大干扰时,由于微电网中存在的低惯性,微电网的频率可能会迅速变化。必须将微电网的频率保持在可接受的范围内,尤其是在孤岛模式下。因此,将ESS与UF继电器一起使用可以有效地保持和稳定频率。本文将系统识别技术应用于微电网,系统地建立数学模型。然后,利用获得的识别模型,可以通过使用H-无限循环整形过程(HLSP)设计ESS的鲁棒控制器。还提出了这种用超音速继电器减载的ESS的应用。所提出的研究系统在DIgSILENT PowerFactory和MATLAB软件上实现。所获得的仿真结果表明,当使用协同ESS控制和UF继电器进行适当的减载时,在较小的频率偏差,更快的响应和最小的减载方面,微电网中的频率稳定性能更为有效。

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