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Improved islanded operation of a diesel generator — PV microgrid with advanced inverter

机译:改进柴油发电机的孤岛运行—带有先进逆变器的光伏微电网

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Microgrids are characterized as weak systems with poor power quality due to significant variations in frequency and/or voltage that can occur during sudden changes in load demand. This problem is exacerbated in cases where one of the power sources is tied to the microgrid through a grid-interactive inverter which is designed to trip when deviations in frequency and voltage exceed well-defined thresholds that are specified by interconnection standards. Numerous solutions with variable complexity are proposed in the literature, including the integration of battery storage systems. This paper presents a simple alternative method that does not require any hardware nor software for solving the inverter tripping problem. Field experiments show that using an advanced inverter with controllable voltage and frequency ride-through capability eliminates the inverter disconnection under any condition, thus improving system performance and reliability.
机译:微电网的特征是由于负载需求的突然变化可能导致频率和/或电压的显着变化,因此系统的电能质量较差。在其中一个电源通过电网互动逆变器连接到微电网的情况下,这个问题会更加严重,该逆变器设计为在频率和电压偏差超过互连标准指定的明确定义的阈值时跳闸。文献中提出了许多具有可变复杂性的解决方案,包括电池存储系统的集成。本文提出了一种简单的替代方法,该方法不需要任何硬件或软件即可解决逆变器跳闸问题。现场实验表明,使用具有可控电压和频率穿越能力的高级逆变器可消除任何条件下的逆变器断开连接,从而提高系统性能和可靠性。

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