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Advanced Fast Large Current Electronic Breaker Using Integration of Surge Current Suppression and Current Divider Sensing Methods

机译:使用浪涌电流抑制和电流分频器传感方法集成先进的快速大电流电子断路器

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摘要

Electronic breakers or fuses are most widely used tools to protect the electric-driven facilities from overload or short circuit. However, they may suffer from two major drawbacks: (1) it normally takes more than 0.1 s to react, resulting in facilities not sufficiently protected, and (2) a higher rating size of breakers or fuses is demanded than expected due to lack of a surge current suppression mechanism. To overcome these problems, this paper proposes a fast large current electronic breaker based on the integration of current divider sensing and surge suppressing methods. The load surge current can be effectively suppressed by series negative temperature coefficient (NTC) thermistors. The load current is then divided into a small portion and converted to a voltage signal for amplification and comparison with the predefined threshold value, i.e., the maximum load tolerance current. AC power will be disconnected immediately by the switching circuit once the load current exceeds the tolerance value. The disconnection of power supply will continue for a period of time set by the timer. The experimental results verify that the proposed electronic breaker can provide a large load current protection up to 20 A under effective surge suppression within 10 ms.
机译:电子断路器或保险丝是最广泛使用的工具,以保护电动设施免受过载或短路。然而,它们可能遭受两个主要缺点:(1)它通常需要超过0.1秒的反应,导致没有充分保护的设施,并且由于缺乏,要求更高的断路器或保险丝的额定值尺寸。浪涌电流抑制机制。为了克服这些问题,本文提出了一种基于当前分频器感测和浪涌抑制方法的快速电流电子断路器。通过串联负温度系数(NTC)热敏电阻可以有效地抑制负载浪涌电流。然后将负载电流分成小部分并转换为用于放大的电压信号,并与预定阈值相比,即最大负载容差电流。一旦负载电流超过公差值,交流电源将立即断开连接电路。电源断开将继续由计时器设置的一段时间。实验结果验证了所提出的电子断路器可以在10毫秒内的有效浪涌抑制下高达20 A提供大的负载电流保护。

著录项

  • 来源
    《Journal of Sensors》 |2019年第1期|共8页
  • 作者单位

    Department of Electronic Engineering National Chin-Yi University of Technology;

    Department of Electronic Engineering National Chin-Yi University of Technology;

    Aeronautical Systems Research Division National Chung-Shan Institute of Science &

    Technology;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TP212;
  • 关键词

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