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Comparison the Performances of Three Earthing Systems for Micro-Grid Protection during the Grid Connected Mode

机译:并网模式下三种微电网保护接地系统的性能比较

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This paper presents, tests and compares three earthing systems (TT, TN and IT) for Micro-Grid (MG) protection against various fault types during the connected mode. The main contribution of this work is including the models of all the micro sources which interfaced to the MG by power electronic inverters. Inverters in turns are provided with current limiters and this also included in the inverter models to exactly simulate the real situation in the MG during fault times. Results proved that the most suitable earthing system for MG protection during the connecting mode is the TN earthing system. That system leads to a suitable amount of fault current sufficient to activate over current protection relays. With using TN system, Touch voltages at the faulted bus and all other consumer’s buses are less than the safety limited value if current limiter is included with the transformer of the main grid which connects MG. For the two others earthing systems (TT and IT), fault current is small and nearly equal to the over load current which make over current protection relay can not differentiate between fault current and overload current. All models of micro sources, earthing systems, inverters, main grid and control schemes are built using Matlab?/Simulink? environment.
机译:本文介绍,测试和比较了三种接地系统(TT,TN和IT),用于在连接模式下针对各种故障类型提供微电网(MG)保护。这项工作的主要贡献是包括了通过电力电子逆变器与MG连接的所有微源的模型。逆变器依次配备有限流器,并且也包含在逆变器模型中,以精确模拟故障期间MG的实际情况。结果证明,在连接模式下最适合进行MG保护的接地系统是TN接地系统。该系统会产生适当数量的故障电流,足以启动过电流保护继电器。使用TN系统时,如果连接MG的主电网变压器中包含限流器,则故障母线和所有其他用户母线的接触电压会小于安全极限值。对于另外两个接地系统(TT和IT),故障电流很小并且几乎等于过载电流,这使得过电流保护继电器无法区分故障电流和过载电流。所有模型的微源,接地系统,逆变器,主电网和控制方案均使用Matlab?/ Simulink?构建。环境。

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