• 제목/요약/키워드: Current Segment Coil

검색결과 4건 처리시간 0.02초

자성물질을 가속시키기 위한 전류 Segment 코일의 설계 (Design of the Current Segment Coil for Accelerating the Magnetic Materials)

  • 정병태
    • 한국전자통신학회논문지
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    • 제7권4호
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    • pp.861-866
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    • 2012
  • 현재까지 코일을 이용한 자성물질 가속에 코일과 자성물질간의 최적한 거리를 명시한 적이 없다. 전류세그먼트 코일구조와 그 다단계를 이용하여 자성물질을 가속 시 통상 코일과 자성 물질이 가깝게만 있으면 최적한 것으로 알고 있으나 미분법으로 극대점을 찾은 결과 코일간의 거리에 대한 절반위치에 있을 때 최적한 거리임을 알 수 있다. 여러 개의 상하 전류세그먼트 코일구조를 만들어 전류세그먼트 코일구조가 자성물질인 강구를 최적한 거리에서 가속할 수 있는지 확인하였다. 강구의 질량에 대한 코일 최소 전류를 실험으로 알았고 그 결과 코일 건이나 자성물질, 자성유체에 적용 시 코일과 물질 간에 최적 거리를 해결 하였다.

4 segment 코일타입 전극구조의 진공 인터럽터에서 접점전극의 슬롯의 길이와 폭이 전극사이의 측자계에 미치는 영향 (Influence of the length and width of the slots of contact electrode on axial magnetic field at the mid-gap in 4 segment coil type vacuum interrupter)

  • 김병철;윤재훈;박성희;강성화;임기조
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2007년도 Techno-Fair 및 추계학술대회 논문집 전기물성,응용부문
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    • pp.210-211
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    • 2007
  • Once high current flows through the vacuum interrupter, eddy current occurs due to the time-varying axial magnetic field caused by the current(AC) and it causes a decrease in axial magnetic field generated by current flowing through coil electrode. but if there are slots on contact electrode it is possible to increase the amplitude of axial magnetic field by reducing the influence of eddy current. there has been many studies about the number of slot of the contact electrode[1][2][3]. In this paper, in addition to these previous results we deal with the influence of the length and width of the slots on axial magnetic field at the mid-gap plane in 4 segment coil type vacuum interrupter by using 3D finite element method software.

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Statistical analysis for HTS coil considering inhomogeneous Ic distribution of HTS tape

  • Jin, Hongwoo;Lee, Jiho;Lee, Woo Seung;Ko, Tae Kuk
    • 한국초전도ㆍ저온공학회논문지
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    • 제17권2호
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    • pp.41-44
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    • 2015
  • Critical current of high-temperature superconducting (HTS) coil is influenced by its own self magnetic field. Direction and density distribution of the magnetic field around the coil are fixed after the shape of the coil is decided. If the entire part of the HTS tape has homogeneous $I_c$ distribution characteristic, quench would be initiated in fixed location on the coil. However, the actual HTS tape has inhomogeneous $I_c$ distribution along the length. If the $I_c$ distribution of the HTS tape is known, we can expect the spot within the HTS coil that has the highest probability to initiate the quench. In this paper, $I_c$ distribution within the HTS coil under self-field effect is simulated by MATLAB. In the simulation procedure, $I_c$ distribution of the entire part of the HTS tape is assume d to follow Gaussian-distribution by central limit theorem. The HTS coil model is divided into several segments, and the critical current of each segment is calculated based on the-generalized Kim model. Single pancake model is simulated and self-field of HTS coil is calculated by Biot-Savart's law. As a result of simulation, quench-initiating spot in the actual HTS coil can be predicted statistically. And that statistical analysis can help detect or protect the quench of the HTS coil.

Bluetooth Low-Energy Current Sensor Compensated Using Piecewise Linear Model

  • Shin, Jung-Won
    • 센서학회지
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    • 제29권5호
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    • pp.283-292
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    • 2020
  • Current sensors that use a Hall element and Hall IC to measure the magnetic fields generated in steel silicon core gaps do not distinguish between direct and alternating currents. Thus, they are primarily used to measure direct current (DC) in industrial equipment. Although such sensors can measure the DC when installed in expensive equipment, ascertaining problems becomes difficult if the equipment is set up in an unexposed space. The control box is only opened during scheduled maintenance or when anomalies occur. Therefore, in this paper, a method is proposed for facilitating the safety management and maintenance of equipment when necessary, instead of waiting for anomalies or scheduled maintenance. A Bluetooth 4.0 low-energy current-sensor system based on near-field communication is used, which compensates for the nonlinearity of the current-sensor output signal using a piecewise linear model. The sensor is controlled using its generic attribute profile. Sensor nodes and cell phones used to check the signals obtained from the sensor at 50-A input currents showed an accuracy of ±1%, exhibiting linearity in all communications within the range of 0 to 50 A, with a stable output voltage for each communication segment.