17.5kV 630A SF6气体绝缘室外型紧凑型RMU设计,用于智能电网应用

Sabri Uzel, Tolga Ünver, Sercan Keskintaş, M. Gürkan, Çağatay Altmok, Haluk Gözde, M. Taplamacioglu
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引用次数: 2

摘要

当高压输电线路发生故障时,断路器立即切断线路中的电流。为了达到这个目的,它们必须有能力在很短的时间内熄灭闭合和打开触点时产生的电弧。RMU还被定义为对电网进行电压和电流测量以检测故障的设备,并且还提供信息以隔离它们并通过断开电网的其他部分进行控制。本文研究了外接式17.5 kV 630A 50/ 60hz SF6气体隔离、分弧、自供电RMU的设计和制造步骤。为此,首先对灭弧和灭弧方法进行说明。然后,给出了详细的设计方法。最后,对验证测试和测试后的修改进行了说明。在此基础上,成功地设计了与断路器/负载断开开关(LBS)相结合的新型RMU,用于智能电网系统的切换动作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
17.5kV 630A SF6 Gas Insulated Outdoor Type Compact RMU Design For Smart Grid Applications
The circuit breakers immediately interrupt the electrical current flowing in a high voltage transmission line when a fault occurs. To achieve this, they must have the ability of extinguishing arcs that occur during closing and opening the contacts within a very short time. RMU is also defined as the device that performs voltage and current measurements of the power grid in order to detect failures, and also provides information to isolate them and control by disconnecting the other part of the grid. In this paper, the design and manufacturing steps of external type 17.5 kV 630A 50/60 Hz SF6 gas isolated, arc splitted, self-powered RMU is studied. For this purpose, first of all the arc quenching and arc quenching methods are explained. Then, the design methodology is given in detail. Finally, the verification tests and modifications applied after these tests are specified. After the process, the new RMU combined with breaker/load break switch (LBS) is designed successfully for switching actions of smart grid systems.
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