• Title/Summary/Keyword: Power/Ground Noise

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Analysis on the Effects of the Induced Noise Voltage with the Impedance Changes of Telecommunication Line in the Power Inducting Situation (전력 유도 장애 발생 시 통신 선로의 접지체 임피던스 크기가 유도 잡음 전압에 미치는 영향 분석)

  • Choi, Mun-Hwan;Lee, Sang-Mu;Cho, Pyoung-Dong
    • 한국정보통신설비학회:학술대회논문집
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    • 2007.08a
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    • pp.227-230
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    • 2007
  • In this paper, we have analyzed the change characteristics of induced noise due to the impedance change of the ground in both ends of telecommunication line. As what affects the induced noise, there are power influence or longitudinal transverse voltages and its weighted filtered voltage. In the result of measurement, we can see the noise level change due to the change of the ground impedance, that is, as the ground impedance at either end of the telecommunication line become grower, the noise level is increased, and as the ground impedance at either end of the telecommunication line become smaller, the noise level is decreased. However, we can't define the relation between ground impedance size and PIF in these measurement results, so we will have to carry out the measurement more deeply and more practically with various conditions in environmental viewpoint and/or experimental viewpoint to establish the definition between ground impedance size and PIF.

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Transfer Characteristic for Various Noise Source Positions and Power Bus Noise Reduction Method using Elevated Ground Island in High Speed PCBs (고속 인쇄회로기판에서 잡음원 위치에 따른 전도 잡음 특성 분석 및 부양된 접지 아일랜드를 이용한 전원부 잡음 감소 방법)

  • 이신영;권덕규;이해영
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.14 no.3
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    • pp.226-232
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    • 2003
  • In this paper, design rule of power island is studied. Power island have a defect that increase transfer noise when each power bus structure is resonant. So, in this paper, resonances are suppressed for various noise source positions and in order to improve noise characteristics, it is suggested EGI in order to improve noise characteristic. At the simulation result, the least resonance is showed for various noise source position and transfer impedance with power bus resonance is reduced about 11 $\Omega$ by EGI.

The Improvement Method of Transfer Noise by Power Islands Resonace (Power Islands의 공진에 의한 잡음 전달 개선 방법)

  • 이신영;권덕규;이해영
    • Journal of the Microelectronics and Packaging Society
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    • v.10 no.1
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    • pp.13-18
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    • 2003
  • In this paper, we researched on the improved method for transferring noise which is generated from power island. In general case, the power island has a drawback where the noise transfer increase because of the structural resonance in each power bus. Thus, this paper suggests two improved methods that reduces the noise transfer. First method is to suppress the structural resonance by varying the source of the noise. The second method is to utilize the EGI in order to minimize the EGI in order to minimize the transfer of the noise when the resonance occurs. The simulation analysis shows that the relocation of the noise source dramatically minimized the resonance in power bus and the utilization of EGI has effectively reduced the noise transfer.

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Design of the Ground Resistance Measuring System using high Performance Filter System (고성능 필터를 이용한 접지저항 측정시스템의 설계)

  • 이기홍;정재기;주형준
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.15 no.6
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    • pp.43-48
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    • 2001
  • This paper represents the design of the ground resistance measuring system insensitive to the noise in the earth. Generally, conventional ground resistance measuring instruments may fail to give a precise values for ground resistance under the situations where there is a high ground potential produced by unbalanced power system currents, haromonic currents and noise etc. To make up the defect of conventional ground resistance measuring instruments, in this paper the ground resistance measuring system using high-performance L-C resonant filter and digital signal processor is designed and the insentivity of the designed ground resistance measuring system for noise in the earth is verified by field test on power service and off power service.

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A measuring Method of Ground Resistance for Energized Power Systems (운전중인 전력설비의 접지저항 측정방법)

  • 이복희;김성원;엄주홍;이승칠
    • Proceedings of the Korean Institute of IIIuminating and Electrical Installation Engineers Conference
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    • 2000.11a
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    • pp.77-81
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    • 2000
  • The purpose of this paper is to describe a new measuring method of ground resistance for the grounding system in energized power equipment and substations. It is very difficult to measure the accurate ground resistance in energized power equipment and substations because of the noise conducted from all external connections to the grounding system and harmonics components caused by unbalanced loads and overloads. The ground resistance that is measured with existing methods includes not only the effect of desired signals but also noise components for the measurement period in grounding system. The measured value of ground resistance can entirely be different from actual value. In this paper, to eliminate 60[Hz] power system interference and harmonic components the low-pass filter method was used in the measurement of ground resistance.

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A Low Power SDRAM Output Buffer with Minimized Power Line Noise and Feedthrough Current (최소화된 Power line noise와 Feedthrough current를 갖는 저 전력 SDRAM Output Buffer)

  • Ryu, Jae-Hui
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.39 no.8
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    • pp.42-45
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    • 2002
  • A low power SDRAM output buffer with reduced power line noise and feedthrough current is presented. In multi I/O SDRAM output buffer, feedthrough current as well as the corresponding power dissipation are reduced utilizing proposed undershoot protection circuits. Ground bounce is minimized by the pull down driver using intelligent feedback scheme. Ground bounce noise is reduced by 66.3% and instantaneous and average power are reduced by 27.5% and 11.4%, respectively.

Analysis on the Effects of the Induced Noise Voltage with the Grounded or Non-grounded Cable Sheath in the Power Inducting Situation (전력 유도 발생 시 케이블 쉬스 접지 여부에 따른 유도 잡음 전압 영향 분석)

  • Lee, Sang-Mu;Choi, Mun-Hwan;Cho, Pyoung-Dong
    • 한국정보통신설비학회:학술대회논문집
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    • 2007.08a
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    • pp.285-288
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    • 2007
  • This article presents the change characteristics of induced noise whether the sheath layer of the cable is grounded or not. As what affects the induced noise, there are power influence or longitudinal transverse voltages and its weighted filtered voltage. The sheath ground is basicaly predicted to have the effects of alleviation on the power influence. But practically the effects may not happen in the case of common cable's sheath layer. Rather there are cases that the ground of sheath affects so that the noise level could increase. So we need to scrutinize the effects of the sheath gorund in the measures for the protection against electromagnetic induction by powerline or traction line system. And the evaluation of using the designated shielding purpose cable is needed.

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A Tendency of Prediction Technique for the Assessment of Railway Noise (철도소음 영향평가를 위한 예측기술 동향)

  • Cho, Jun-Ho;Park, Young-Min;Sun, Hyo-Sung;Hong, Woong-Gi
    • Journal of Environmental Impact Assessment
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    • v.16 no.1
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    • pp.99-105
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    • 2007
  • Since 1990s, the railway noise has been researched and developed in our nation. First of all, what's causing the noise and how to eliminate the cause of the noise must be found out. Secondly, cutting off the propagation path of the noise from the noise source to the receiving points. In this study the characteristics of prediction formula for the assessment of railway noise used in some nations including Korea were investigated. In order to develop the prediction formula of the railway noise, the noise radiated from railway vehicle, rails and sleepers, characteristics of noise barrier, velocity of train, ground effects, roughness should be analyzed and predicted. Especially, on the basis of acoustics, the characteristics of source are applied to acoustic power and directivity information.

Noise Improvement Countermeasure by Noise Pattern Analysis for Electrical and Electronic Equipment (전기전자 기기의 노이즈 패턴 분석에 의한 노이즈 개선 대책)

  • Cho, Dae-Hoon;Lee, Ki-Sik
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.66 no.1
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    • pp.194-202
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    • 2017
  • In this study, we measured and analyzed electrical noise signals present in devices and systems operated in industrial facilities. Based on the analytic findings, we studied the most effective improvement measures for eliminating such noise signals. Leakage current and ground current generate data interferences in communication systems, and therefore we measured leakage current and ground current. We also measured and analyzed electrical noises in power systems to predict noise pathways and interference routes. Furthermore, we proposed the most effective and reliable improvement measures for blocking off various noise signals and safely eliminating them by improving the internal wiring of the facilities and grounding systems. As a final step, we conducted the proposed improvement measures and confirmed that they helped to improve the operations of the device sand systems in service by re-measuring electrical noise signals and comparing them with those measured before the proposed improvement measures were implemented.

Two Switches Balanced Buck Converter for Common-Mode Noise Reduction

  • Kanjanasopa, Warong;Prempraneerach, Yothin
    • 제어로봇시스템학회:학술대회논문집
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    • 2004.08a
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    • pp.493-498
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    • 2004
  • The EMI noise source in a switching mode power supply is dominated by a common mode noise. If we can understand the common mode noise occurring mechanism, it is resulted to find out the method to suppress the EMI noise source in the switching mode power supply. The common mode noise is occurring mostly due to circuit is unbalanced which is caused by the capacitive coupling to frame ground, which passes through a heatsink of the switching devices. This research paper presents a new effective balancing method of buck converter circuit by mean of grounding the parasitic and compensation capacitors in correct proportion which is called that the common mode impedance balance (CMIB). The CMIB can be achieved by source, transmission line and termination balanced, such balancing, the common mode current will be cancelled out in the frame ground. The greatly reduced common mode noise can be confirmed by the experimental results.

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