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Simulation Test of a DC Fault Current Limiter for Fault Ride-Through Problem of Low-Voltage DC Distribution

机译:低压直流分布故障乘车DC故障电流限制器的仿真试验

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摘要

The low voltage direct current (LVDC) distribution networks are connected with too many kinds of loads and sources, which makes them prone to failure. Due to the small damping value in the DC lines, the fault signal propagates so fast that the impact current with the wave front of millisecond and the transient voltage pose great challenges for fault detection. Even worse, some faults with small currents are difficult to detect and the communication is out of sync, resulting in protection misoperation. These problems have severely affected the new energy utilization. In view of this, a DC fault current limiter (FCL) composed of inductance, resistance, and power electronic switch was designed in this paper. The rising speed of fault current can be decreased by the series inductance and the peak value of the fault current can be limited by series impedance, thus in this way the running time can be gained for fault detection and protection. For distributed energy access, by deducing the short circuit fault characteristic expression of LVDC distribution network, the feasibility of FCL was verified. Based on the structure of the bridge-type alternating current (AC) current limiter, the structure and parameters of the DC FCL were determined according to the fault ride-through target. Then, a low voltage ride-through strategy based on DC FCL was proposed for the bipolar short-circuit fault of LVDC distribution network. Finally, MATLAB/Simulink simulation was used to verify the rationality of the proposed FCL and its ride-through strategy.
机译:低压直流(LVDC)配送网络与太多负载和源连接,这使得它们容易出现故障。由于直流线路中的阻尼值小,故障信号传播得如此之快,即冲击电流与毫秒的波浪前面和瞬态电压构成故障检测的巨大挑战。更糟糕的是,一些具有小电流的故障难以检测,并且通信超出同步,导致保护误操作。这些问题严重影响了新的能源利用。鉴于此,在本文中设计了一种由电感,电阻和电力电子开关组成的直流故障电流限制器(FCL)。通过串联电感可以降低故障电流的上升速度,并且故障电流的峰值可以受到串联阻抗的限制,从而可以获得运行时间来获得故障检测和保护。对于分布式能源接入,通过推导LVDC分配网络的短路故障特性表达,验证了FCL的可行性。基于桥式交流电流(AC)电流限制器的结构,根据故障乘坐目标确定DC FCL的结构和参数。然后,提出了基于DC FCL的低电压乘驾驶策略,用于LVDC分配网络的双极短路故障。最后,使用Matlab / Simulink仿真来验证所提出的FCL的合理性及其乘坐策略。

著录项

  • 作者

    Bing Han; Yonggang Li;

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  • 年度 2020
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  • 原文格式 PDF
  • 正文语种 eng
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