• 제목/요약/키워드: Electromagnetic Energy

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A new lossless snubber for DC-DC converters with energy transfer capability

  • Esfahani, Shabnam Nasr;Delshad, Majid;Tavakoli, Mohhamad Bagher
    • Smart Structures and Systems
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    • 제25권3호
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    • pp.385-391
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    • 2020
  • In this paper, a new passive lossless snubber circuit with energy transfer capability is proposed. The proposed lossless snubber circuit provides Zero-Current Switching (ZCS) condition for turn-on instants and Zero-Voltage Switching (ZVS) condition for turn-off instants. In addition, its diodes operate under soft switching condition. Therefore, no significant switching losses occur in the converter. Since the energy of the snubber circuit is transferred to the output, there are no significant conduction losses. The proposed snubber circuit can be applied on isolated and non-isolated converters. To verify the operation of the snubber circuit, a boost converter using the proposed snubber is implemented at 70W. Also, the measured conducted Efficiency Electromagnetic Interference (EMI) of the proposed boost converter and conventional ones are presented which show the effects of proposed snubber on EMI reduction. The experimental results confirm the presented theoretical analysis.

Topology Design Optimization of Electromagnetic Vibration Energy Harvester to Maximize Output Power

  • Lee, Jaewook;Yoon, Sang Won
    • Journal of Magnetics
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    • 제18권3호
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    • pp.283-288
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    • 2013
  • This paper presents structural topology optimization that is being applied for the design of electromagnetic vibration energy harvester. The design goal is to maximize the root-mean-square value of output voltage generated by external vibration leading structures. To calculate the output voltage, the magnetic field analysis is performed by using the finite element method, and the obtained magnetic flux linkage is interpolated by using Lagrange polynomials. To achieve the design goal, permanent magnet is designed by using topology optimization. The analytical design sensitivity is derived from the adjoint variable method, and the formulated optimization problem is solved through the method of moving asymptotes (MMA). As optimization results, the optimal location and shape of the permanent magnet are provided when the magnetization direction is fixed. In addition, the optimization results including the design of magnetization direction are provided.

직교 배열표를 이용한 휠 기반 회전형 전자기 유도 방식 에너지 하베스터 개발 (Development of Rotational Type of Wheel-Based Electromagnetic Induction Energy Harvester by Using Orthogonal Array)

  • 박현철;문용준;권세진
    • 대한기계학회논문집B
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    • 제37권2호
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    • pp.125-130
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    • 2013
  • TPMS(Tire pressure monitoring system)의 의무장착에 대한 법률개정에 따른 개발의 활성화를 토대로, WSN(Wireless Sensor Network)의 '설치하고 잊어버린다'는 기본 명제 하에, 차량수명과 동일한 성능의 배터리 대체용 에너지 하베스터에 대한 연구가 활발히 진행되고 있다. 본 논문은 자동차의 메커니즘적인 측면에서 가장 유용한 회전운동 성분을 이용하여 회전하는 휠과 고정된 브레이크 디스크 사이의 상대운동을 통한 전자기 유도방식 발전을 채택하였다. 휠 측에 구성된 코일과 브레이크 디스크에 매립된 자석의 다양한 배열과 코일 권선수 등을 설계변수로 잡고 직교배열표를 이용하여 최적의 조합을 찾아낸 후 실험을 통해 실제 축전되는 전기 에너지의 양을 측정하여 도출된 특성함수를 바탕으로 본 모듈의 타당성을 검증하였다.

단상 1MVA 고온초전도 변압기의 누설임피던스 3차원 해석 및 시험 (Test and Analysis of 3-D of Leakage Impedances in a Single-Phase 1MVA HTS Transformer)

  • 김성훈;김우석;이상진;최경달;주형길;홍계원;한진호;한송엽;송희석;박정호
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2003년도 하계학술대회 논문집 B
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    • pp.1003-1005
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    • 2003
  • In this paper, 3-D nonlinear electromagnetic analysis of a single phase 1MVA 22.9 kV/6.6 kV high temperature superconducting(HTS) transformer with double pancake windings was accomplished. The characteristics of 1MVA HTS transformer such as The efficiency, voltage regulation and % impedance voltage drop were obtained by the 3-D non-linear electromagnetic analysis. And in order to verify the 3-D non-linear electromagnetic analysis of a single phase 1MVA HTS transformer, a 1MVA test transformer with windings made of copper tapes with the same size as BSCCO-2223 HTS tape was manufactured. The energy conservation method to perform the analysis of leakage impedances of both a 1MVA HTS transformer and test transformer was used. The characteristic analysis such as efficiency, voltage regulation and % impedance voltage drop of transformer was performed. And the obtained values of both 1MVA HTS transformer and test transformer were compared.

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진동에너지 하베스팅을 이용한 전력감지시스템용 리니어 전자기 발전기에 관한 최적설계 (A Study on Optimal Design for Linear Electromagnetic Generator of Electricity Sensor System using Vibration Energy Harvesting)

  • 조성진;김진호
    • 한국기계가공학회지
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    • 제16권2호
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    • pp.7-15
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    • 2017
  • Recently, an electricity sensor system has been installed and operated to prevent failures and accidents by identifying whether a transformer is normal in advance of failure. This electricity sensor system is able to both measure and monitor the transformer's power and voltage remotely and send information to a manager when unusual operation is discovered. However, a battery is required to operate power detection devices, and battery systems need ongoing management such as regular replacement. In addition, at a maintenance cost, occasional human resources and worker safety problems arise. Accordingly, we apply a linear electromagnetic generator using vibration energy from a transformer for an electric sensor system's drive in this research and we conduct optimal design to maximize the linear electromagnetic generator's power. We consider design variables using the provided design method from Process Integration, Automation, and Optimization (PIAnO), which is common tool from process integration and design optimization (PIDO). In addition, we analyze the experiment point from the design of the experiments using "MAXWELL," which is a common electromagnet analysis program. We then create an approximate model and conduct accuracy verification. Finally, we determine the optimal model that generates the maximum power using the proven approximate kriging model and evolutionary optimization algorithm, which we then confirm via simulation.

전자기력을 이용한 알루미늄 스크랩 중의 Fe 제거에 관한 연구;Part 2. Al-Si-Cu계 합금 스크랩에서 전자기력에 따른 Fe계 금속간화합물의 이동양상 (A Study on the Elimination of Fe Elements in Aluminum Alloy by Electromagnetic Force;Part 2. The Movement of Fe-Contained Intermetallics with Electromagnetic Force in Al-Si-Cu Scrap)

  • 김정호;노정훈;박준표;윤의박
    • 한국주조공학회지
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    • 제18권3호
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    • pp.240-245
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    • 1998
  • In the view point of the environmental conservation and the energy reduction, the recycling of metal scrap is coming as one of the global subjects in the world. In this study, the movement of intermetallics with electromagnetic force in a melt of a scrap of Al-Si-Cu alloy (JIS ADC12), which was widely used in diecasting process, was investigated in order to eliminate the Fe element, which was usually accumulated in a scrap. In this study, we applied electromagnetic method to eliminate Fe element in ADC12 aluminum alloy scrap which contains 1.64wt.% Fe and the effects of electromagnetic force on the particle movement was visualized and confirmed by water modeling and experiment. As a result, the Fe intermetallic compounds are moved to the direction opposite to that of the electromagnetic force as the force applies, thus eliminated from the bulk metal. Therefore, the content of Fe in matrix decreased from 1.64wt.% to 0.45wt.%.

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유한요소해석을 통한 전자기 성형장비 공정변수의 성형력에 미치는 영향 (Effect of Process Parameters in Electromagnetic Forming Apparatus on Forming Load by FEM)

  • 노학곤;박형규;송우진;강범수;김정
    • 한국정밀공학회지
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    • 제30권7호
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    • pp.733-740
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    • 2013
  • The high-velocity electromagnetic forming (EMF) process is based on the Lorentz force and the energy of the magnetic field. The advantages of EMF include improved formability, wrinkle reduction, and non-contact forming. In this study, numerical simulations were conducted to determine the practical parameters for the EMF process. A 2-D axis-symmetric electromagnetic model was used, based on a spiral-type forming coil. In the numerical simulation, an RLC circuit was coupled to the spiral coil to measure various design parameters, such as the system input current and the electromagnetic force. The simulation results show that even though the input peak current levels were at the same level in each case, the forming condition varied due to differences in the frequency of the input current. Thus, the electromagnetic forming force was affected by the input current frequency, which in turn, determined the magnitude of the current density and the magnetic flux density.

경량전철용 유도급전 시스템의 전자파 분석 연구 (A Study on the Electro-magnetic Wave of Inductive Power Transfer System for Light Railway Transit)

  • 박찬배;이병송;이형우
    • 전기학회논문지
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    • 제61권8호
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    • pp.1210-1215
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    • 2012
  • Traction motors for driving and power conversion devices using semiconductor switch are equipped with a transportation systems such as an electrical railway system. Power conversion devices have the possibility of malfunction by external electromagnetic waves. As a result, these could affect the safe operation of the railway. Moreover, the electromagnetic waves above safe limits will be harmful to the passengers inside the railway vehicles or anyone working around the rail-track. For this reason, the importance and need about the reliability check and complement of electromagnetic waves generated from the IPT(Inductive Power Transfer) system have been suggested for the safe application of the IPT system to the railway system. In this study, prediction for the electromagnetic wave properties was conducted through FEM(Finite Element Method) analysis of 5kW-class IPT system design model. Next, the 5kW IPT system prototype was made and then the small-scaled railway vehicle was made to mount the IPT system and the energy management system. Finally, the electromagnetic waves generated from the real small-scaled IPT system were measured and analyzed, and then the reliability check of predictions by FEM analysis were carried out.

EMP shielding of mortar mixed with SiC and graphite

  • Oh-Seong Park;Hyeong-Kyu Cho
    • Journal of Ceramic Processing Research
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    • 제23권2호
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    • pp.165-170
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    • 2022
  • Using electromagnetic shielding technology, the exterior walls of buildings can prevent the penetration of electromagnetic waves. This effectively reduces the electromagnetic field intensity and electromagnetic pulse inside buildings. Therefore, in recent years, researchers have focused on developing electromagnetic shielding technology. In this study, we analyzed the physical properties and EMP shielding efficiency of shielding materials, such as silicon carbide (SiC), obtained as a byproduct of the semiconductor manufacturing processes, and graphite mixed with mortar, used in the external walls. The shielding materials underwent pretreatment, such as grinding, before mixing them with mortar. Because shielding materials are expensive, the shielding efficiency was calculated by mixing the respective shielding materials with mortar in only the outermost 10% of the sample mortar volume. Moreover, we calculated the shielding efficiency of the different samples of mortar with shielding materials throughout the volume of the samples using shielding effectiveness (SE) estimation formula. The predicted SE values of the samples of mortar mixed with granular SiC, graphite powder, and SiC powder were 20 dB, 18 dB, and 28 dB, respectively. The SE of the sample of mortar mixed with SiC powder is approximately equal to 30 dB, that is, the maximum shielding efficiency (99.9%).

하이브리드 에너지하베스팅 블록 개발 및 발전성능 평가 (Development of Hybrid Energy Harvesting Block and Evaluation on Power Generation Performance)

  • 김효진;박지영;진규남;노명현
    • 토지주택연구
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    • 제5권2호
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    • pp.99-106
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    • 2014
  • 이 연구에서는 주택과 도시 시설물에 적용이 가능하고, 시설물의 수요특성에 적합한 맞춤형 하이브리드형 에너지블록을 압전과 전자기 유도방식을 동시에 활용하여 개발하고자 하였다. 이를 위하여 에너지하베스팅 블록의 종류별 특성과 요구조건을 분석하고 그에 따른 에너지블록의 개선방향 및 적용방안을 도출하였다. 이러한 방안에 따라 선행연구에서 개발된 프로토타입 에너지블록의 특성 및 성능과 이 연구에서 개발된 하이브리드 에너지블록과의 성능을 비교분석 하였다. 비교결과, 하이브리드 에너지 블록이 기존 프로토타입에 비하여 1회 가진 시 12.7배, 그리고 5회 연속가진 시 28.9배의 출력을 나타냈다. 이는 연구목적인 W급의 전기에너지 생산목적에 부합되는 것으로, 주택 및 도시시설물에 적용이 가능할 것으로 사료된다.