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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Electrothermal Transient Behavioral Modeling of Thyristor-Based Ultrafast Mechatronic Circuit Breaker for Real-Time DC Grid Emulation
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Electrothermal Transient Behavioral Modeling of Thyristor-Based Ultrafast Mechatronic Circuit Breaker for Real-Time DC Grid Emulation

机译:基于晶闸管的超快机电断路器实时直流电网仿真的电热瞬态行为建模

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摘要

The accuracy of power electronics simulation relies on the semiconductor switch model employed. Thus, in this paper where an ultrafast mechatronic circuit breaker (UFMCB) is implemented in real-time on the field programmable gate array, a detailed nonlinear thyristor model is proposed for extra device-level information regarding design evaluation. The cascaded thyristors impose a heavy computational burden on the UFMCB simulation, and node elimination is achieved following the proposal of a scalable thyristor model. For the convenience of the circuit breakers integration into dc grid, a pair of coupled voltagecurrent sources is inserted as its interface, which achieves a reduction in the dimension of system admittance matrix, and the subsequent proposal of a relaxed scalar NewtonRaphson method further expedites the simulation by decomposing the nodal matrix equation. Meanwhile, the modular multilevel converter as a dc grid terminal adopts half-bridge and clamped double submodule topologies to test system performance in conjunction with the UFMCB. Real-time execution is achieved and the results are validated by ANSYS/Simplorer and PSCAD/EMTDC in device- and system-level, respectively.
机译:电力电子仿真的准确性取决于所采用的半导体开关模型。因此,在本文中,在现场可编程门阵列上实时实现超快机电断路器(UFMCB)的情况下,提出了详细的非线性晶闸管模型,以提供有关设计评估的额外器件级信息。级联晶闸管给UFMCB仿真带来了沉重的计算负担,并且根据可扩展晶闸管模型的建议实现了节点消除。为了方便将断路器集成到直流电网中,将一对耦合的电压电流源作为其接口插入,从而减小了系统导纳矩阵的尺寸,随后提出的宽松标量NewtonRaphson方法的提议进一步加快了仿真速度通过分解节点矩阵方程同时,作为直流电网终端的模块化多电平转换器采用半桥和钳位双子模块拓扑结构来与UFMCB一起测试系统性能。可以在设备级和系统级分别实现实时执行并通过ANSYS / Simplorer和PSCAD / EMTDC验证结果。

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