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Implementation of the differential protection for MVDC distribution systems using real-time simulation and hardware-in-the-loop

机译:使用实时仿真和硬件在环实现MVDC配电系统的差动保护

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Development of Medium Voltage DC (MVDC) distribution systems require using proper protection schemes whereas due to the behavior of dc fault current, the conventional fault detection methods for ac distribution systems cannot provide a selective protection for these networks. In this paper, a differential based protection method using Ethernet communication has been implemented for a radial MVDC distribution system with integrated PV and WT. This method must be fast enough to detect the faults before involving the main converters and separate only the faulty feeder in order to increase the reliability of the power system. The experimental validation is performed by using Hardware-in-the-Loop (HIL) approach and communication based on the IEC61850 protocol. A real time simulator (OPAL-RT) and a development board (DK60) are used to evaluate the method and to calculate the time delay of this fault detection algorithm.
机译:中压直流(MVDC)配电系统的开发需要使用适当的保护方案,但是由于直流故障电流的行为,用于交流配电系统的常规故障检测方法无法为这些网络提供选择性保护。在本文中,已经为带有集成式PV和WT的径向MVDC配电系统实现了使用以太网通信的基于差动的保护方法。此方法必须足够快以在涉及主转换器之前检测到故障,并仅分离故障的馈线,以提高电力系统的可靠性。通过使用硬件在环(HIL)方法和基于IEC61850协议的通信来执行实验验证。实时仿真器(OPAL-RT)和开发板(DK60)用于评估该方法并计算该故障检测算法的时间延迟。

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