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Design and analysis of hybrid DC circuit breaker for LVDC grid systems

机译:用于LVDC网格系统的混合直流断路器的设计与分析

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The emerging interconnections of renewable energy sources that generate DC power have resulted in demands on DC grid systems. In this situation, a low-voltage DC (LVDC) grid system could be a solution for these DC power sources. For the reliable operation of a LVDC grid, DC faults are an issue and DC circuit breakers (DC CBs) are appropriate devices to clear fault current. However, there are some difficulties in terms of breaking DC faults such as the absence of zero crossing of the current and voltage, and the high di/dt of the fault current. This paper proposes a hybrid circuit breaker (HCB) with a new structure for a LVDC grid system. The main switch consists of a vacuum interrupter (VI) and a permanent magnetic actuator (PMA). Some improvements are proposed to enhance the performance of the PMA. A bi-directional commutation loop consisting of a minimum number of power electronic devices is suggested. To absorb fault energy, a capacitor and a diode loop are applied. The principle of the proposed HCB and the design methods for all of the components are analyzed. Through a simulation model, the designed components are selected and verified. Experimental results with a realized prototype (750 V/300A) verify the design method and its performance.
机译:生成直流电源的可再生能源的新出现互连导致了对DC网格系统的需求。在这种情况下,低压DC(LVDC)网格系统可以是这些直流电源的解决方案。对于LVDC网格的可靠操作,DC故障是一个问题,DC断路器(DC CBS)是清除故障电流的合适设备。然而,在断开DC断层的方面存在一些困难,例如没有零交叉的电流和电压的零点,以及故障电流的高DI / DT。本文提出了一种具有用于LVDC网格系统的新结构的混合断路器(HCB)。主开关由真空断路器(VI)和永磁执行器(PMA)组成。提出了一些改进以增强PMA的性能。建议由最小电力电子设备组成的双向换向循环。为了吸收故障能量,施加电容器和二极管环。分析了所提出的HCB的原理和所有组分的设计方法。通过仿真模型,选择设计组件并验证。具有实现原型(750 V / 300A)的实验结果验证了设计方法及其性能。

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