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Mechanical DC circuit breaker model for real time simulations

机译:机械直流断路器模型,用于实时仿真

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The main goal of the paper is the modeling of the mechanical circuit breaker (MCB) that can replicate the breaker characteristics in real time environment. The proposed MCB with active current injection is modelled for a system level, which provides adequate representation of the circuit breakers for system analysis studies. External current-voltage characteristics of the proposed MCB models replicate the ones of the devices in the real world. It is well known that the DC circuit breaker (DCCB) needs to interrupt DC faults very quickly in order to avoid converter damages. The total current interruption time consists of fault detection time, time needed for the DC protection to provide command to the DCCB, and DCCB arc clearing time. Thus, it is necessary to demonstrate the system performance of associated protective devices through real time simulation, before these devices can be implemented and commissioned in practice. This paper presents a detailed modeling of the mechanical DCCB in real time simulation environment based on RTDS. The performance of the model is verified by the simulations based on PSCAD and meaningful conclusions are drawn.
机译:本文的主要目标是对机械断路器(MCB)进行建模,该断路器可在实时环境中复制断路器的特性。拟议的带有有源电流注入的MCB在系统级别建模,可为系统分析研究提供足够的断路器表示。所提出的MCB模型的外部电流-电压特性复制了现实世界中的那些设备。众所周知,DC断路器(DCCB)需要非常快速地中断DC故障,以避免损坏转换器。总的电流中断时间包括故障检测时间,直流保护向DCCB提供命令所需的时间以及DCCB的消弧时间。因此,有必要通过实时仿真来演示相关保护设备的系统性能,然后才能在实践中实现和调试这些设备。本文提出了基于RTDS的实时仿真环境中机械DCCB的详细建模。通过基于PSCAD的仿真验证了模型的性能,并得出了有意义的结论。

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