• 제목/요약/키워드: Energy Converter

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An Isolated High Step-Up Converter with Non-Pulsating Input Current for Renewable Energy Applications

  • Hwu, Kuo-Ing;Jiang, Wen-Zhuang
    • Journal of Power Electronics
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    • 제16권4호
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    • pp.1277-1287
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    • 2016
  • This study proposes a novel isolated high step-up galvanic converter, which is suitable for renewable energy applications and integrates a boost converter, a coupled inductor, a charge pump capacitor cell, and an LC snubber. The proposed converter comprises an input inductor and thus features a continuous input current, which extends the life of the renewable energy chip. Furthermore, the proposed converter can achieve a high voltage gain without an extremely large duty cycle and turn ratio of the coupled inductor by using the charge pump capacitor cell. The leakage inductance energy can be recycled to the output capacitor of the boost converter via the LC snubber and then transferred to the output load. As a result, the voltage spike can be suppressed to a low voltage level. Finally, the basic operating principles and experimental results are provided to verify the effectiveness of the proposed converter.

에너지 획득을 위한 AC/DC 공진형 펄스 컨버터의 연구 (Study of AC/DC Resonant Pulse Converter for Energy Harvesting)

  • ;정교범
    • 전력전자학회논문지
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    • 제10권3호
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    • pp.274-281
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    • 2005
  • 압전소자를 에너지원으로 사용하여 자립형 전기전자시스템에 에너지를 공급하는 에너지 획득(Harvesting) 개념의 구현을 위하여, 새로운 AC/DC 공진형 펄스 컨버터를 제안한다. 컨버터는 정류기와 DC 컨버터의 2단계로 구성되었으며, AC/DC 변환을 위한 정류기는 MOSFET의 3상한 동작 특성을 이용하여 구현하고, N형 및 P형 MOSFETs을 사용하여 DC/DC 부스트 컨버터를 구현하였다. 제안된 컨버터 시스템의 동작원리 및 동작모드를 스위칭 소자의 기생캐패시턴스를 고려하여 해석하고, 시뮬레이션을 통하여 해석결과를 검증하였다. CMOS IC 칩으로 제작된 본 시스템의 실험 결과는 수십 uW 용량에서 에너지 획득 개념의 구현 가능성을 제시하였다.

Theoretical Analysis of Wave Energy Converter

  • Oh, Jin-Seok;Komatsu, Toshimitsu;Kim, Yun-Hyung
    • Journal of Advanced Marine Engineering and Technology
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    • 제32권1호
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    • pp.169-174
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    • 2008
  • Floating devices, such as a cavity resonance device take advantage of both the water motion and the wave induced motions of the floating body itself. The wave energy converter is known commercially as the WAGB(Wave Activated Generator Buoy) and is used in some commercially available buoys to power navigation aids such as lights and horns. This wave energy converter consists of a circular floatation body which contains a vertical center pipe that has free communication with the sea. A theoretical analysis of this power generated by a pneumatic type wave energy converter is performed and the results obtained from the analysis are used for a real wave energy converter for buoy. This paper presents the analysis results and the design method for the WEC(Wave Energy Converter), and the associate results are application to the commercially available WEC for buoy. Maximum performance of WEC occurs at resonance with driving waves. The analysis of WEC is performed with LabVIEW program, and the design method of WEC for buoy is suggested in this paper.

High Quality DC-DC Boosting Converter Based on Cuk Converter and Advantages of Using It in Multilevel Structures

  • Rostami, Sajad;Abbasi, Vahid;Kerekes, Tamas
    • Journal of Power Electronics
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    • 제19권4호
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    • pp.894-906
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    • 2019
  • In this paper, a DC-DC converter is proposed based on the Cuk converter. The proposed converter has high efficiency and it can be used in multilevel DC-DC converters. A reduction of the inductors size in comparison to Cuk converter and a reduction in the inductors resistance negative effects on efficiency are the important points of the proposed converter. Its voltage ripple is reduced when compared to other converters. Its output voltage has a high quality and does not contain spikes. A theoretical analysis demonstrates the positive points of the proposed converter. The design and analysis of the converter are done in continues conduction mode (CCM). Experiments confirm the obtained theoretical equations. The proposed converter voltage gain is similar to that of a conventional Boost converter. As a result, they are compared. The comparison illustrates the advantages of the proposed converter and its higher quality. Furthermore, a prototype of the proposed converter and its combination with a 2x multiplier are built in the lab. Experimental results validate the analysis. In addition, they are in good agreements with each other.

부스트 컨버터를 이용한 새로운 역율 개선회로 (A New Power Factor Correction Circuit Using Boost Converter)

  • 김만고
    • Journal of Advanced Marine Engineering and Technology
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    • 제21권2호
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    • pp.178-185
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    • 1997
  • According to the wide - spread use of rectifier in electronic equipments, such problems as electronic components failures or equipment disorders have been occurred due to current harmonics. To overcome these problems, power factor correction circuits employing boost converter have been used. The high switching stress of boost converter can be reduced by snubber circuit. Recently, research activities in snubber circuits have been directed to energy recovery snubber for improving the efficiency of power converter. In this study, a new passive snubber circuit which can recover trapped snubber energy without added control is proposed for boost converter. The control of boost converter with proposed snubber is the same as the conventional one. In addition, the energy recovery circuit can be implemented with a few passive components. The circuit operation is confirmed through simulation.

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에너지 저장장치를 포함하는 신재생에너지원용 부스트 컨버터의 인덕터 기생저항에 따른 제어기 설계 영향 분석 (Influence of the Parasitic Inductor Resistance on Controller Design of Boost Converter for Renewable Energy System including an Energy Storage)

  • 박선재;박종후;전희종
    • 전력전자학회논문지
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    • 제16권5호
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    • pp.511-520
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    • 2011
  • 현재 스마트 그리드 산업으로 인하여 신재생에너지의 활용이 중시되고 있다. 이러한 시점에서 신재생에너지원을 더욱 효율적이고 안정적으로 사용하기 위해서 에너지 저장장치의 필요성이 부각되고 있다. 이러한 경우 신재생 에너지원을 계통에 사용할 수 있도록 만들어 주는 부스트 컨버터와 에너지 저장장치의 에너지 전달을 위한충 방전기를 사용하게 된다. 이 두 가지 전력변환장치의 사용을 위해, 상호 간섭에 의해 각각의 제어기 설계에 어떠한 영향을 미치는지 알아야 한다. 우선 각각의 제어기 설계를 위해 시뮬레이션을 통한 간접적인 결과를 얻어내야 하는데, 이 때 인덕터를 이상적으로 생각하고 시뮬레이션을 할 수도 있고, 실제 하드웨어와 같이 인덕터에 기생하는 저항을 포함하여 시뮬레이션 할 수도 있다. 본 논문에서는 부스트 컨버터의 인덕터 기생저항이 부스트 컨버터와 충 방전기의 제어기 설계시 어떠한 영향을 미치는 지에 대해 비교해 봄으로써 시뮬레이션시 인덕터 기생저항 성분을 반드시 고려하여 설계해야 한다는 것을 주파수 영역에서의 MATLAB 시뮬레이션과 시간영역에서의 PSIM 시뮬레이션을 통해 살펴보았다.

Model Predictive Control of Bidirectional AC-DC Converter for Energy Storage System

  • Akter, Md. Parvez;Mekhilef, Saad;Tan, Nadia Mei Lin;Akagi, Hirofumi
    • Journal of Electrical Engineering and Technology
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    • 제10권1호
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    • pp.165-175
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    • 2015
  • Energy storage system has been widely applied in power distribution sectors as well as in renewable energy sources to ensure uninterruptible power supply. This paper presents a model predictive algorithm to control a bidirectional AC-DC converter, which is used in an energy storage system for power transferring between the three-phase AC voltage supply and energy storage devices. This model predictive control (MPC) algorithm utilizes the discrete behavior of the converter and predicts the future variables of the system by defining cost functions for all possible switching states. Subsequently, the switching state that corresponds to the minimum cost function is selected for the next sampling period for firing the switches of the AC-DC converter. The proposed model predictive control scheme of the AC-DC converter allows bidirectional power flow with instantaneous mode change capability and fast dynamic response. The performance of the MPC controlled bidirectional AC-DC converter is simulated with MATLAB/Simulink(R) and further verified with 3.0kW experimental prototypes. Both the simulation and experimental results show that, the AC-DC converter is operated with unity power factor, acceptable THD (3.3% during rectifier mode and 3.5% during inverter mode) level of AC current and very low DC voltage ripple. Moreover, an efficiency comparison is performed between the proposed MPC and conventional VOC-based PWM controller of the bidirectional AC-DC converter which ensures the effectiveness of MPC controller.

Predictive control and modeling of a point absorber wave energy harvesting connected to the grid using a LPMSG-based power converter

  • Abderrahmane Berkani;Mofareh Hassan Ghazwani;Karim Negadi;Lazreg Hadji;Ali Alnujaie;Hassan Ali Ghazwani
    • Ocean Systems Engineering
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    • 제14권1호
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    • pp.17-52
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    • 2024
  • In this paper, the authors explore the modeling and control of a point absorber wave energy converter, which is connected to the electric grid via a power converter that is based on a linear permanent magnet synchronous generator (LPMSG). The device utilizes a buoyant mechanism to convert the energy of ocean waves into electrical power, and the LPMSG-based power converter is utilized to change the variable frequency and voltage output from the wave energy converter to a fixed frequency and voltage suitable for the electric grid. The article concentrates on the creation of a predictive control system that regulates the speed, voltage, and current of the LPMSG, and the modeling of the system to simulate its behavior and optimize its design. The predictive model control is created to guarantee maximum energy output and stable grid connection, using Matlab Simulink to validate the proposed strategy, including control side generator and predictive current grid-side converter loops.

도르래를 이용한 파력발전기 프로토 타입 개발에 관한 연구 (Development of the Prototype of Wave Energy Converter by a Pulley System)

  • 정현석
    • 한국해양공학회지
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    • 제24권1호
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    • pp.133-139
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    • 2010
  • From the ancient times, there are waves in the ocean. And all the moving body have energy. We have a kind of hope to convert the wave energy into electric one. Finally we can find out a power generator mechanism that mainly use the principle of pulleys. We have made drawings for this and completed the wave energy converter. This wave energy converter consists of several pulleys, rope, generator, buoys and anchors. The distance between an anchor and buoy is changed according to the hight of waves. Several sets of anchors, pulleys and buoys can make the movement of rope, and the ropes wind up a converter axis. In case of 1 meter movement of the buoy, the winding distance will be amplified 2 or 3 times if we use several moving and fixed pulleys. Based on this concept, we developed 2 kind of prototypes. One is for the test in the laboratory and the other is for the field test. Through the two test, we could confirm the usability of this mechanism.

배터리 에너지 저장장치용 고효율 2kW급 양방향 DC-DC 컨버터 설계 (Design of a 2kW Bidirectional Synchronous DC-DC Converter for Battery Energy Storage System)

  • 이태영;조병극;조영훈;홍찬욱;이한솔;조관열
    • 전력전자학회논문지
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    • 제22권4호
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    • pp.312-323
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    • 2017
  • This paper introduces the bidirectional dc-dc converter design case study, which employs silicon-carbide (SiC) MOSFETs for battery energy storage system (BESS). This converter topology is selected as bidirectional synchronous buck converter, which is composed of a half bridge converter, an inductor, and a capacitor, where the converter has less conduction loss than that of a unidirectional buck and boost converter, and to improve the converter efficiency, both the power stage design and power conversion architecture are described in detail. The conduction and switching losses are compared among three different SiC devices in this paper. In addition, the thermal analysis using Maxwell software of each switching device supports the loss analyses, in which both the 2 kW prototype analyses and experimental results show very good agreement.