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Overvoltage Condition Assessment of a Microgrid Due to Faults Occurring in the Islanded Mode of Operation

机译:由于孤岛运行模式中的故障导致的微电网过电压状态评估

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This paper presents the results of the simulations and their respective analyses corresponding to the power frequency overvoltages resulting from various fault types occurring inside a microgrid. During the islanded mode of operation, the analysed microgrid can be simultaneously fed by a diesel generator, a 1 MW wind power turbine, a small solar system and a 1 MW hydroelectric scheme. The operating voltage of the microgrid is 2.4 kV. During a fault in the system, the overvoltages normally occur in two remarkable instants. The first one occurs at the beginning of the fault itself. The second one occurs at the instant when the fault is cleared. The major concern here is the overvoltage during the fault period. Due to the travelling wave effect along cables and overhead lines composing the microgrid system, these overvoltages can be amplified, thus jeopardizing the insulation level of the microgrid transmission system and related equipment. Much of the work available now is dedicated to overvoltages present in high-voltage systems leaving a gap for the study and behaviour on low voltage microgrid systems. The overvoltage stress is characterized by the maximum low-frequency, short-duration (crest value) of the overvoltage. Both cables and overhead lines that constitute the microgrid transmission system are characterized by their R-L-C parameters. The simulations of the microgrid system are conducted using the ATP program. According to the international ANSI and IEEE standards, the minimum BIL (Basic Impulse Insulation Level) and BSL (Basic Impulse Switching Level) for the 2.4 kV voltage level are 20 kV and 10 kV, respectively; thus, care should be taken so that the healthy phases upon which commonly appear such overvoltages are not exceeded in their insulation level.
机译:本文介绍了仿真的结果以及它们各自的分析,这些结果与微电网内部发生的各种故障类型导致的工频过电压相对应。在孤岛模式下,分析的微电网可以同时由柴油发电机,1兆瓦的风力涡轮机,小型太阳能系统和1兆瓦的水力发电系统供电。微电网的工作电压为2.4 kV。在系统故障期间,通常会在两个明显的瞬间发生过电压。第一个发生在故障本身的开始处。第二个故障发生在清除故障的瞬间。此处主要关注的是故障期间的过电压。由于沿着构成微电网系统的电缆和架空线的行波效应,这些过电压会被放大,从而危及微电网传输系统和相关设备的绝缘水平。现在,许多可用的工作都致力于解决高压系统中存在的过电压问题,从而为低压微电网系统的研究和行为留下了空白。过电压应力的特征在于过电压的最大低频,短时(峰值)。构成微电网传输系统的电缆和架空线均以其R-L-C参数为特征。使用ATP程序对微电网系统进行仿真。根据国际ANSI和IEEE标准,电压为2.4 kV时的最低BIL(基本脉冲绝缘水平)和BSL(基本脉冲切换水平)分别为20 kV和10 kV;因此,应注意避免在其绝缘水平上超过通常会出现此类过电压的健康相。

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