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A fast acting DC solid state fault isolation device (FID) with Si and SiC devices for MVDC distribution system

机译:具有用于MVDC分配系统的SI和SIC器件的快速作用直流固态故障隔离装置(FID)

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This paper presents a low voltage (400V) hardware prototype of a fast acting medium voltage DC circuit breaker. Simulation results obtained using PLECS software and hardware testing results are also presented for the same prototype. The prototype serves as a proof of concept showing implementation of firmware logic capable of interrupting DC fault current within 4.042 micro-seconds from the instant an overcurrent condition occurs. The authors propose that the same concept can be extended to medium voltage DC level and present a performance comparison of real 6.5kV silicon (Si) and 10kV silicon carbide (SiC) devices as solid state fault isolation devices (SSFID) in a medium voltage DC (MVDC) distribution system using SPICE simulations. The MVDC SSFID described in this paper finds an application in MVDC distribution system described by Next Generation Integrated Power System (NGIPS) roadmap [1] proposed by Electric Ship Office (ESO) of Office of Naval Research (ONR). Other applications include large scale grid connected solar and wind farm at MVDC level.
机译:本文介绍了快速作用介质电压DC断路器的低电压(400V)硬件原型。使用PLECS软件和硬件测试结果获得的模拟结果也用于相同的原型。原型发出的概念证明,显示了能够在从瞬态发生的4.042微秒内中断直流故障电流的固件逻辑的实现。作者提出了相同的概念可以扩展到中电压DC电平,并在中压DC中呈现真实6.5kV硅(Si)和10kV碳化硅(SiC)装置(SSFID)的实际6.5kV硅(Si)和10kV碳化硅(SiC)器件的性能比较(MVDC)配电系统使用Spice仿真。本文中描述的MVDC SSFID在下一代集成电力系统(NGIPS)路线图[1]中描述的MVDC分配系统中的应用程序在海军研究办公室(ESO)所提出的下一代集成电力系统(NGIPS)路线图[1]中。其他应用包括MVDC电平的大型网格连接太阳能和风电场。

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