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Intentional Island and Dynamic Analysis of a Micrognd

机译:Micrognd的有意岛和动力学分析

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During the project of the distribution system’s protection, it is necessary to consider the presence of distributed generators that demand modifications in the protection system design and create new operational possibilities, such as the planning and operation of microgrids. The microgrids’ ability to operate as islands can contribute to improve the energy supply continuity indexes as well as reduce the costs of energy not supplied. In this paper, the under/over frequency and directional overcurrent relays are modeled through ATP-EMTP and applied to identify faults and create intentional islands. Furthermore, an analysis on the microgrid’s islanded operation is conducted to verify the maintenance of voltage magnitude and frequency within the regulatory agencies’ constraints. CIGR’s 14 bus test system is used to perform short circuit analysis considering the variation of resistance and fault type, to verify the effectiveness of coordination between these devices. The results show the effectiveness of coordination between the devices and the system’s dynamics during the first few seconds after the intentional island.
机译:在配电系统的保护项目中,有必要考虑分布式发电机的存在,这些发电机要求对保护系统的设计进行修改,并创造新的运营可能性,例如微电网的规划和运营。微电网充当孤岛的能力可以有助于改善能源供应的连续性指标,并降低未供应能源的成本。在本文中,通过ATP-EMTP对欠频/过频继电器和定向过流继电器进行建模,并将其用于识别故障和创建有意孤岛。此外,对微电网的孤岛运行进行了分析,以验证在监管机构的约束范围内电压幅值和频率的维持情况。 CIGR的14总线测试系统用于执行考虑电阻和故障类型变化的短路分析,以验证这些设备之间协调的有效性。结果表明,在有意孤岛之后的最初几秒钟内,设备与系统动力学之间进行协调的有效性。

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