• Title/Summary/Keyword: 전도노이즈

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A Analysis on the Result of CE/CS Test on the KOMPSAT-I ETB (아리랑1호 위성 ETB의 전도성 전자파 환경 시험결과 분석)

  • 임성빈;천용식
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.12 no.2
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    • pp.184-192
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    • 2001
  • In this paper, we analyze the result of the conduced emission and susceptibility tests performed on the KOMPSAT-I ETB Platform. The ETB platform consists of the EM (Engineering Model) boxes developed to perform the electrical functional test. During the conducted emission test, we measured the instant waveform in time domain when each switch was turn on, and spectrum of the noise in the frequency range of 10 Hz up to100 MHz fur the steady state of the ETB. During the conducted susceptibility test, no malfunction and no serious damage of the electronic box were observed when a simulated noise waveform was applied to the DC power bus. The simulated waveform was obtained by adding the 6 dB-system margin to the worst case waveform measured from the conducted emission. This test was performed as co-development of the KOMPSAT-I with TRW in USA.

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A Study on Prediction of Conducted EMI In PWM inverter fed Induction Motor Drive System (PWM 인버터-유도전동기 구동시스템의 전도노이즈 예측에 관한 연구)

  • 이진환;안정준;원충연;김영석;최세완
    • Proceedings of the KIPE Conference
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    • 1999.07a
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    • pp.367-372
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    • 1999
  • In this paper, an inverter fed induction motor drive system is analyed in order to predict the conducted interference. High frequency model for inverter, motor and system parasitic components are proposed. High frequency component allows time and frequency domain analysis to be performed with standard PSpice tool. The overall high frequency component and model are verified by comparing simulation and experimental result.

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A study on the Empirical Design of EMI Filters for Power Supply Noise Reduction in Electronic Devices (전자기기의 전원 노이즈 저감을 위한 EMI 필터 경험적 설계에 관한 연구)

  • Yun-Min Lee;Jin-Seob, Shin
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.23 no.4
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    • pp.59-64
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    • 2023
  • In this paper, It is proposed through the empirical design of a Conducted EMI filter for noise reduction of power used in electronic devices. For the proposed structure, A-type, B-type, C-type, and D-type structures were designed, and conductive noise reduction was confirmed by using an LC network with various X-capacitors, Y-capacitors, and Air-inductors. 10 [μH] was used for L1 and L2, and 4.7 [nF] was used for C1 and C2. L3 for common mode used 13[μH], and C5, C6, C7 were designed using 10[nF]. The measured insertion loss values of the designed EMI filter were -74.4[dB] at 3.2MHz, -75.4[dB] at 4MHz, and -75.3[dB] at 13.56MHz. Therefore, the proposed EMI filter will be able to reduce power supply noise used in various electronic devices.

Development of the 30/50kW LSPV Photovoltaic Inverter for 3Phases (3상 30/50kW LSPV 태양광 인버터 개발)

  • Park, Tae-Bum;Kim, Sung-Hwan;Park, Ju-Hyun;Kim, Hee-Jung;Lee, Ki-Su;Jon, Yuong-Soo;Yoon, Sun-Jae;Kim, Ho-Yeol
    • Proceedings of the KIEE Conference
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    • 2011.07a
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    • pp.1153-1154
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    • 2011
  • 본 논문은 3상 30kW 및 50kW 계통연계형 태양광 인버터의 개발에 관한 것으로, 그에 대한 제어기 및 성능에 대해 소개한다. 본 논문에 소개되는 3상 30/50kW LSPV 태양광 인버터는 태양전지에서 발생하는 가변성 직류에너지를 한전계통에 최적으로 주입시키는 계통연계형 전력변환장치이며 국내의 발전사업자용으로 개발되었다. 3상 380V의 한전계통에 절연형으로 연계되며 낮은 THD 와 높은 역률로 고효율을 달성하였다. DC입력측의 개방전압은 900V로 태양전지모듈 조합의 편의성 및 DC과전압등에 대한 안전성을 향상하였고, EMI 전도노이즈에 대한 Filter를 장착하여 노이즈성분을 크게 개선하였다.

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Enhancement technology for unwanted emission of logistics tracking device (물류트랙킹 장비의 전자파불요방사 개선 기술)

  • Lee, Eun-Kyu;Choi, Sung-Pill;Moon, Young-Sik;Jeon, Mi-Jin;Jo, Jae-Hui;Kim, Jae-Joong;Choi, Hyung-Rim
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2013.10a
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    • pp.898-899
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    • 2013
  • In recent years, logistics tracking Device using to improve logistics efficiency are being extensively researched. The purpose of this paper is to Enhancement technology for unwanted emission of logistics tracking device usable cargo container security transport.

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A Study on the Evaluating Characteristics of EM Wave Absorber for Noise Suppression from PCB (PCB상의 노이즈 제거용 전파흡수체의 특성 평가에 관한 연구)

  • Kim, Dong-Il;Choi, Dong-Soo;Yoon, Sang-Gil;Yoo, Gun-Suk
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.20 no.6
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    • pp.509-515
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    • 2009
  • In this paper, we analyzed and evaluated noise suppression characteristic of EM wave absorber. We fabricated several absorber samples in different ratios of Sendust and Amorphous with CPE(Chlorinated Ploy-ethylene) as binder and calculated material constants by measured S-parameter. Then, we confirmed that the noise suppression characteristic of EM wave absorbers using microstrip line. A microstrip line with EM wave absorber placed on its top was used to evaluate the conduction noise suppression. As a result, noise suppression effect show different charateristic by changing relative permeability. Therefore, EM wave absorber using Sendust show excellent characteristic. In particular the maximum power absorption over 90 % in 1.7 GHz to over 6 GHz has obtained when composition of Sendust:CPE=80:20wt.%.

Analysis of Shielding Effectiveness of Low Conductivity Shield Layers within Near-field Region (근거리장에 놓인 저전도율 차폐막의 차폐 효과 분석)

  • Lee, Won-Seon;Lee, Won-Hui;Hur, Jung
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.19 no.2
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    • pp.59-65
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    • 2019
  • The EMI shielding effectiveness of shielding layers thickness was analyzed when the low conductivity shielding layers was placed in the near field of the noise source. A spiral antenna with broadband characteristics was used as the noise source, and graphite was selected as the low conductivity shielding material. Two spiral antennas were constructed to analyze the transmission coefficient between two antennas, and the distances between the transmitting and receiving antennas were 5 cm and 10 cm. The thickness of the shielding layers was changed from 1 um to 200 um. The frequency was changed from 100 MHz to 6 GHz to obtain a maximum SE(Shielding Effectiveness) of 70 dB. In this simulation, electronic shielding was used due to the nature of graphite, which is a shielding film material. Based on these results, we will study how to improve the shielding performance by implementing magnetic shielding in the future.

Conducted EMI reduction of Induction Motor Drive System by PWM Switching Technique (PWM 스위칭 기법에 의한 유도전동기 구동시스템의 전도노이즈 저감)

  • Kim H. J.;Lee W. C.;Kim L. H.;Won C. Y.;Choi S. Y.;Kim G. S.;Jeong D. H.
    • Proceedings of the KIPE Conference
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    • 2004.07b
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    • pp.769-773
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    • 2004
  • Conventional SVPWM method has null switching vectors. Null switching vectors cause high common-mode voltage in induction motor drive system. The newly developed common mode voltage reduction PWM technique don't use zero switching state for inverter control. It is realized by changing software without additional hardware. Simulation and experimental results show that proposed method are reduced common mode voltage more than conventional method.

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Conducted Noise Reduction in Three-Phase Boost Converter using Random (3상 승압형 컨버터에 의한 전도노이즈 감소)

  • Jung, Dong-Hyo;Kim, Sang-Nam
    • Proceedings of the KIEE Conference
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    • 2003.07e
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    • pp.79-82
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    • 2003
  • The switching-mode power converter has been widely used because of its features of high efficiency and small weight and size. In the switching-mode power converter, the output voltage is generally controlled by varying the duty ratio of main switch. When a converter operates in steady state, duty ratio of the converter is kept constant. So the power of switching noise is concentrated in specific frequencies. The more white noise is injected, the more conducted EMI is reduced. But output-voltage is not sufficiently regulated. This is the reason why carrier frequency selection topology is proposed. In the case of carrier frequency selection, output-voltage of steady state and transient state is fully regulated. Spectrum analysis is performed on the Phase current and the CM noise voltage. The former is measured with Current Probe and the latter is achieved with LISN, which are connected to the spectrum analyzer respectively.

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