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首页> 外文期刊>International Journal of Intelligent Systems and Applications >Microgrid Restoration after Major Faults in Main Grid with Automatic and Constant Time Switching
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Microgrid Restoration after Major Faults in Main Grid with Automatic and Constant Time Switching

机译:自动和恒定时间切换的主电网重大故障后的微电网恢复

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When a microgrid and distributed generation resources are disconnected from the grid for protection reasons, the restoration of microgrid (restoring distributed generation resources to feed the loads in microgrid) causes to increase the reliability of microgrid. When a fault occurs in the main grid, the reliability of islanded microgrid will be increased. In this paper a novel method for restoration of the microgrid is proposed when the fault occurred in the main grid. Therefore, we can take advantage of selling power energy during the fault. In addition, because of increasing in reliability, the price of energy will be increased. This paper selected a microgrid with two type of distributed generation resources, power electronic based distributed generation and small gas turbine with synchronous generator. Another purpose of this paper is to reduce restoration time. The proposed algorithm for automatic switching time is provided. This paper selected a microgrid system in medium voltage. The limitation voltage and frequency is according to IEEE 1547 standards, and simulation will be done by EMTP-RV with automatic and constant time switching separately.
机译:当出于保护原因将微电网和分布式发电资源与电网断开连接时,微电网的恢复(恢复分布式发电资源以供应微电网中的负载)会提高微电网的可靠性。当主电网发生故障时,孤岛微电网的可靠性将提高。本文提出了一种在主电网发生故障时修复微电网的新方法。因此,在故障期间我们可以利用出售电能的优势。另外,由于可靠性的提高,能量的价格将增加。本文选择了一种具有两种分布式发电资源的微电网:基于电力电子的分布式发电和带有同步发电机的小型燃气轮机。本文的另一个目的是减少恢复时间。提供了提出的自动切换时间算法。本文选择了中压微电网系统。极限电压和频率符合IEEE 1547标准,并且将通过EMTP-RV分别进行自动和恒定时间切换来进行仿真。

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