• Title/Summary/Keyword: Circuit breakers curve

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The Study About Low Voltage Circuit Breaker Mix Method Between IEC Circuit Breaker and Domestic Circuit Breaker (저압용 IEC 차단기와 국내 차단기 혼용방안에 관한 연구)

  • Jung, Jin-Soo;Kim, Han-Sang;Han, Woon-Ki;Kim, Sun-Gu;Park, Chan-Eom
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.61 no.6
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    • pp.905-909
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    • 2012
  • Recent WTO/TBT agreement was adopted by the IEC domestic. For this reason, low voltage electrical equipment was many Confusion arises. Low voltage circuit was also one of these. The case of low voltage circuit, existing domestic circuit breakers and circuit breakers IEC curve differs from the behavior of each other. If low voltage circuit breaker wrong facility, circuit breaker malfunction may occur due to the large property damage. In this paper, to solve these problems domestic circuit breakers and circuit breaker operation IEC curves were analyzed. And, through experiments suggested compatible breaker way.

The Study on the Characteristics of Leakage Circuit Breakers in Protection of the Low Voltage Electrical Apparatus (저압전기기기의 보호를 위한 전류동작형 누전차단기의 특성에 관한 연구)

  • 김은배;오철수
    • 전기의세계
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    • v.25 no.4
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    • pp.59-62
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    • 1976
  • This study on the characteristics of the leakage circuit breakers handles the rolls of each itemized parts of the mentioned apparatus and their influence in determining of the characteristic curve of leakage circuit breaker. Furthermore the differential current transforms in the mentioned apparatus for detecting the fault is handled as a heavy point.

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A Study on the Operating Characteristics of the Aged ELCB according to the Overcurrent (노후화된 누전차단기의 과전류 동작 특성에 관한 연구)

  • Ye Jin Park;Sin Dong Kang;Jae-Ho Kim
    • Journal of the Korean Society of Safety
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    • v.38 no.5
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    • pp.1-7
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    • 2023
  • This study analyzes the operational characteristics of 311 aged and non-aged residual current circuit breakers (RCCBs) in low-voltage consumer contexts. It investigates the influence of external temperature and harmonics based on the rated current multiples. To simulate temperature variations, a convectional oven was used around the circuit breakers. Additionally, the generation of harmonic reference signals and data measurement for overcurrent experiments were conducted using NI SCXI, myDAQ, and LabVIEW. An observation revealed that as the ambient temperature increased, the operating time of RCCBs decreased in the time delay region. This was attributed to the faster response or bending of the bimetal, which is the tripping element. However, aged RCCBs encountered challenges with tripping outside the protective curve. The operating time of the circuit breakers exhibited an acceleration influenced by the order and content of harmonic currents, potentially leading to malfunctions. Aged RCCBs demonstrated faster operating times than their non-aged counterparts. However, the difference in operating time varied based on the manufacturer's and operating environment of the RCCBs. Frequent malfunctions of RCCBs can result in power outages. In cases where these circuit breakers fail to operate, they can lead to secondary damages, including electrical fires and shocks. Consequently, it is imperative to consider the operating environment of RCCBs and provide appropriate replacement cycles to mitigate these risks.

A Research on Dielectric Characteristics of Small Current Interruption Considering Pre-Condition Test for Puffer Type Circuit Breaker (Pre-Condition 시험을 고려한 Puffer식 차단기의 진상소전류 차단성능에 관한 연구)

  • Ahn, Heui-Sub;Yoon, Jeong-Hoon;Lee, Jong-Chul;Choi, Jong-Ung;Oh, Il-Sung;Lee, Sung-Ho
    • Proceedings of the KIEE Conference
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    • 2003.10b
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    • pp.12-14
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    • 2003
  • This paper presents the small current interruption capability of $SF_6$ puffer circuit breaker considering pre-condition. Firstly, the change of dielectric strength of the 3 breakers was compared with testing breakers as clean contacts and eroded contacts after 3 shots of 760 according to new IEC 62271-100 standard. Also the dielectric strength curve of each model was calculated through flow and electric field simulations. From these results, we could modify the empirical equation, being used to predict the dielectric strength of small current interruption capability, considering the effects of pre-condition.

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A Study on the Operating Characteristics of Molded Case Circuit Breakers according to Temperature Rise (온도상승에 따른 배선용 차단기의 동작특성에 관한 연구)

  • Jung, Da-Woon;Kim, Jae-Ho
    • Journal of the Korean Society of Safety
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    • v.30 no.5
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    • pp.8-13
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    • 2015
  • Molded Case Circuit Breakers (MCCBs) are typically used to provide over current protection for electrical safety caused by short circuit faults and overloads in indoor low voltage power systems. The MCCB automatically connects and disconnects loads from the electrical source when the current reaches a value and duration that will cause an excessive. However, the MCCB sometimes is not interrupted due to a malfunction, nuisance tripping, or in a fire. Ensuring electrical safety is very important in a indoor low voltage power system. This paper presents the operating characteristics of MCCBs according to a temperature rise from room temperature to 160 degrees Celsius delivered by a radiant panel heater. The ABS 54c(rated current: 30A) of the hydraulic magnetic trip type was used in the experiments. The signals of temperature, voltage, and current were measured using the high accuracy Signal Conditioning Extensions for Instrumentation (SCXI) measurement system with the LabVIEW program manufactured by National Instruments. The operating characteristics were measured as functions of current amplitude and ramp-up rate. The MCCB tripping time decreased as a result of increasing current amplitude and ramp-up rate under a temperature rise condition, because the temperature and level of the current are directly proportional to the tripping time. Additionally, an instantaneous operation was observed after 8 times of the rated current, and the MCCB began to melt a surface temperature of around 300 degrees Celsius of. The experimental results coincided well with the operating curve.

Development of Circuit Breaker Automatic Selection Program (선박 배선용 차단기 자동 선정 S/W 개발)

  • Ha, Sangho
    • Special Issue of the Society of Naval Architects of Korea
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    • 2017.10a
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    • pp.88-92
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    • 2017
  • As the considerable request of the fast and accurate way of the selection of circuit breaker is increased, we introduce the development of software of circuit breaker selection for the marine use. Originally, the selection of circuit breaker has been carried out by manual in the marine project. It is not the easy work to select the proper type of circuit breaker to check the time-current characteristic curves of each type of circuit breakers for the various type of loads. In this regards, we developed the software to select the proper type of circuit breaker to confirm fast and accurately. And, we introduce the course of the development of the software for the selection of circuit breaker.

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Implementing a Dielectric Recovery Strength Measuring System for Molded Case Circuit Breakers

  • Cho, Young-Maan;Rhee, Jae-ho;Baek, Ji-Eun;Ko, Kwang-Cheol
    • Journal of Electrical Engineering and Technology
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    • v.13 no.4
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    • pp.1752-1758
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    • 2018
  • In a low-voltage distribution system, the molded case circuit breaker (MCCB) is a widely used device to protect loads by interrupting over-current; however the hot gas generated from the arc discharge in the interrupting process depletes the dielectric recovery strength between electrodes and leads to re-ignition after current-zero. Even though the circuit breaker is ordinarily tripped and successfully interrupts the over-current, the re-ignition causes the over-current to flow to the load again, which carries over the failure interruption. Therefore, it is necessary to understand the dielectric recovery process and the dielectric recovery voltage of the MCCB. To determine these characteristics, a measuring system comprised of the experimental circuit and source is implemented to apply controllable recovery voltage and over-current. By changing the controllable recovery voltage, in this work, re-ignition is driven repeatedly to obtain the dielectric recovery voltage V-t curve, which is used to analyze the dielectric recovery strength of the MCCB. A measuring system and an evaluation technique for the dielectric recovery strength of the MCCB are described. By using this system and method, the measurement to find out the dielectric recovery characteristics after current-zero for ready-made products is done and it is confirmed that which internal structure of the MCCB affects the dielectric recovery characteristics.

Calculation of Pressure Rise in the Puffer Cylinder of EHV GCB Without Arc (무부하시의 초고압 GCB의 파퍼실린더 내부의 상승압력 계산)

  • Park, K.Y.;Song, K.D.;Choi, Y.K.;Shin, Y.J.;Song, W.P.;Kang, J.H.
    • Proceedings of the KIEE Conference
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    • 1994.07b
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    • pp.1559-1561
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    • 1994
  • At present, the principle of puffer action in high current interruption is adopted in almost of the EHV(Extra High Voltage) and UHV(Ultra High Voltage) GCB(Gas Circuit Breakers). The thermal interruption capability of these GCBs critically depends on the pressure rise in the puffer cylinder at current zero. The pressure rise in the puffer cylinder depends on the puffer cylinder volume, flow passage and leakage area in the interrupter, stroke curve etc. Recently commercial CFD(Computational Fluid Dynamics ) packages have been widely adopted to calculate the pressure distribution in the interrupter. However, there are still several problems with it, e.g. very expensive price, moving boundary problem, computation time, difficulty in using the package etc. Thus, the calculation of the puffer cylinder pressure in simple and relatively correct method is essential in early stage of GCB design. In these paper, the model ing technique and computed results for EHV class GCB (HICO, 145kV 40kA and 362kV 40kA GCB) are presented and compared with available measured results.

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A Study on Protection Coordination Algorithm for Separating Fault Section in LVDC Distribution System (LVDC 배전계통에 있어서 사고구간분리 보호협조 알고리즘에 관한 연구)

  • Kang, Min-Kwan;Lee, Hu-Dong;Tae, Dong-Hyun;Rho, Dae-Seok
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.22 no.1
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    • pp.768-776
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    • 2021
  • Current protection-coordination methods use the reverse time characteristics of the T-C curve, which is not effective for a LVDC distribution system because the protective operation time of converters and DC circuit breakers is much faster than AC protection devices. Therefore, an algorithm is proposed for fault-section isolation using the fault current slope to minimize the blackout region and coordinate between converters and protection devices in a rapid and accurate manner. The method deals with the slope characteristics of a fault current, which may depend on the fault location in an LVDC distribution system. Thus, an LVDC distribution system can be operated in a stable manner by isolating the fault section selectively before the shutdown of the main converter using slope characteristics, which change in proportion to the line impedance and fault location. A 1.5-kV LVDC distribution system was modeled to verify the effectiveness of the proposed algorithm using PSCAD/EMTDC. The system is composed of a distribution substation, LVDC converter, and distribution lines. The simulation results confirm that the proposed algorithm is a useful tool for minimizing the fault section in an LVDC distribution system.