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Characterization and Performance of 600V 100A Solid-State Circuit Breaker

机译:600V 100A固态断路器的特性和性能

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Solid State Circuit Breakers (SSCB) are a growing applications of Wide-Band-Gap (WBG) semiconductor devices, because of their ability to perform arc-less interruption of high DC currents. However, a necessary exercise before applying any novel switching device to the breaker space is the evaluation of its switching characteristics at the breaker's rated voltage and current. The turn ON and turn OFF losses have been accepted as two key parameters for performance evaluation. Since SSCB's are normally closed in their nominal operational state and are opened in fault conditions, this makes conduction losses the dominant form of thermal stress. However, characterizing the switching performance of an SSCB is also very useful to validate protection functionality, speed and ability to perform within its safe operating area. Towards that end, Double Pulse Testing (DPT) which is a testing apparatus intended for characterizing single semiconductor devices, has been adopted in this paper as a platform for SSCB testing of switching losses and dynamics, off-state voltage blocking and on-state current interruption. Such a platform provides a basis for comparative analysis of different SSCB implementations without having to expend energy by continuously operating at rated power. The DPT platform was used to validate an SSCB package from ATOMPower Inc, and the data obtained from the test was further post-processed in Python. MATLAB/Simulink software has been used for demonstration purposes and experimental results are included in this paper.
机译:固态断路器(SSCB)是宽带间隙(WBG)半导体器件的越来越多的应用,因为它们能够执行高直流电流的禁用中断的能力。然而,在将任何新颖的切换装置应用于断路器空间之前,需要进行必要的运动是在断路器额定电压和电流下对其开关特性的评估。接通和关闭损耗已被接受为绩效评估的两个关键参数。由于SSCB通常在其标称运行状态下关闭并在故障条件下打开,因此导电损失了热应力的主要形式。然而,表征SSCB的切换性能也非常有用,可验证在其安全操作区域内执行的保护功能,速度和能力。本文采用了作为用于表征单个半导体器件的测试装置的双脉冲测试(DPT)作为用于SSCB测试的开关损耗和动态,断路器电压阻塞和导通电流的平台。中断。这种平台为不同SSCB实现的比较分析提供了基础,而不必通过以额定功率连续运行来消耗能量。 DPT平台用于验证来自Opower Inc的SSCB封装,并在Python中进一步处理了从测试中获得的数据。 MATLAB / SIMULINK软件已被用于演示目的,本文包含实验结果。

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