• Title/Summary/Keyword: DC Power-Bus

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A Study on the Single-Stage AC/DC PFC TTFC(TWO-Transistor Forward Converter) (단일전력단 AC/DC PFC TTFC(Two-Transistor Forward Converter)에 관한 연구)

  • Bae, Jin-Yong;Kim, Yong;Kim, Pill-Soo;Cho, Kyu-Man;Choi, Geun-Soo
    • Proceedings of the KIEE Conference
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    • 2005.07b
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    • pp.1432-1434
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    • 2005
  • Single-stage converters are simpler and less expensive than convention two-stage converters. It can be a challenge, however, to design single-stage converters to satisfy certain key criteria such as input power factor, primary-side do bus voltage, and output voltage ripple. This is especially true for higher power single-stage AC/DC TTFC(Two-Transistor Forward Converter).

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A Novel Solid State Controller for Parallel Operated Isolated Asynchronous Generators in Pico Hydro Systems

  • Singh, Bhim;Kasal, Gaurav Kumar
    • Journal of Electrical Engineering and Technology
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    • v.2 no.3
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    • pp.358-365
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    • 2007
  • This paper deals with a novel solid state controller (NSSC) for parallel operated isolated asynchronous generators (IAG) feeding 3-phase 4-wire loads in constant power applications, such as uncontrolled pico hydro turbines. AC capacitor banks are used to meet the reactive power requirement of asynchronous generators. The proposed NSSC is realized using a set of IGBTs (Insulated gate bipolar junction transistors) based current controlled 4-leg voltage source converter (CC-VSC) and a DC chopper at its DC bus, which keeps the generated voltage and frequency constant in spite of changes in consumer loads. The complete system is modeled in MATLAB along with simulink and PSB (power system block set) toolboxes. The simulated results are presented to demonstrate the capability of isolated generating system consisting of NSSC and parallel operated asynchronous generators driven by uncontrolled pico hydro turbines and feeding 3-phase 4-wire loads.

Single-Stage AC/DC Converter with Low Conduction Loss and Power Factor Correction (저 도전 손실형 단단 역률보상 교류/직류 변환기)

  • 류명효;정종진;김흥근
    • The Transactions of the Korean Institute of Power Electronics
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    • v.5 no.1
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    • pp.79-87
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    • 2000
  • 본 논문은 저 도전 손실을 갖는 새로운 단단, 단일 스위치 역률보상 부스트형 교류/직류 변환기를 소개한다. 제안한 변환기는 약간의 구조적 차이점을 제외하고 기존의 변환기와 동일하게 해석될 수 있다. 먼저, 제안한 변환기와 기존의 변환기의 동작원리를 파악하여 두 변환기의 차이점을 이해하고 1단 역률 보상 교류/직류 변환기의 구조적 문제점인 에너지 저장 커패시터에서의 직류 전압 상승을 방지하기 위한 직류 부스 전압 궤환 방식을 도입하여 제안한 변환기에 적용하였다. 100W급 변환기를 제작/실험하여 본 변환기의 타당성을 검증하였다.

Topological Observability Analysis Using Incidence Matrix in Power Systems (접속행열을 이용한 전력계통 입상학적 가관측성 해석)

  • Seog-Joo Kim;Young-Hyun Moon
    • The Transactions of the Korean Institute of Electrical Engineers
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    • v.36 no.11
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    • pp.769-776
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    • 1987
  • This paper deals with the topological observability analysis and the development of an observable island identification algorithm for state estimation in power systems, by using the incidence matrix and bus voltage grouping. An analogy of the DC power flow method to the DC circuit analysis is introduced, and all the relationships between power flows and phase angles are replaced by the corresponding current-voltage relation. As a result, a set of topological measurement equation expressed in the form of the incidince matrix is derived for the topological analysis, and the observability test is carried out by examining the rand of the measuremint matrix. The integer Gauss elimination method is introduced in the determination of matrix rand, so that the proposed observability test yields a precise observability criterion without any nearly-zero pivot problem encountered in the conventional algorithm. Also, an observable island identification algorithm reduced its computational time in comparision with the conventional algorithms. The proposed algorithms have been tested for sample systems, and their practicability has verified.

Optimal SOC Reference Based Active Cell Balancing on a Common Energy Bus of Battery

  • Bae, SunHo;Park, Jung-Wook;Lee, Soo Hyoung
    • Journal of Electrical Engineering and Technology
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    • v.12 no.1
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    • pp.29-38
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    • 2017
  • This paper presents a study on the state-of-charge (SOC) reference based active cell balancing in real-time. The optimal references of SOC are determined by using the proposed active cell balancing system with the bidirectional DC/DC converters via the dual active bridge (DAB) type. Then, the energies between cells can be balanced by the power flow control of DAB based bidirectional DC/DC converters. That is, it provides the effective management of battery by transferring energy from the strong cell to the weak one until the cell voltages are equalized to the same level and therefore improving the additional charging capacity of battery. In particular, the cell aging of battery and power loss caused from energy transfer are considered. The performances of proposed active cell balancing system are evaluated by an electromagnetic transient program (EMTP) simulation. Then, the experimental prototype is implemented in hardware to verify the usefulness of proposed system.

Phase-Shift Full-Bridge DC/DC Converter with Fixed-Phase Operation Inverter (고정 위상 동작 인버터를 포함하는 위상천이 풀 브리지 DC/DC 컨버터)

  • Kim, Jin-Ho;Park, Jae-Sung;Kim, Hong-Kwon;Park, Jun-Woo;Shin, Yong-Saeng;Ji, Sang-Keun;Cho, Sang-Ho;Roh, Chung-Wook;Hong, Sung-Soo
    • The Transactions of the Korean Institute of Power Electronics
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    • v.18 no.2
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    • pp.131-137
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    • 2013
  • In this paper, the phase-shift full-bridge DC/DC converter with fixed-phase operation inverter is proposed. The proposed circuit consists of two full-bridge inverters which are connected in parallel. While one full-bridge inverter operates as the fixed-phase, it regulates the output voltage by adjusting the phase of the other inverter. During the normal operation period, the proposed circuit makes the less amount of conduction loss of the primary switches and secondary synchronous rectifiers, as well as the less amount of the current ripple of the output inductor, than the conventional phase-shift full-bridge DC/DC converter does. Also, it achieves high efficiency by reducing the snubber loss of the secondary synchronous rectifier. To sum up, the present inquiry analyzes the theoretical characteristics of the proposed circuit, and shows the experimental results from a prototype for 450W power supply.

A Novel Flyback-type Utility Interactive Inverter for AC Module Systems

  • Shimizu Toshihisa;Nakamura Naoki;Wada Keiji
    • Proceedings of the KIPE Conference
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    • 2001.10a
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    • pp.518-522
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    • 2001
  • In recent years, natural energy has attracted growing interest because of environmental concerns. Many studies have been focused on photovoltaic power generation systems because of the ease of use in urban areas. On the conventional system, many photovoltaic modules (PV modules) are connected in series in order to obtain the sufficient DC-bus voltage for generating AC output voltage at the inverter circuit. However, the total generation power on the PV modules sometimes decreases remarkably because of the shadows that partially cover the PV modules. In order to overcome this drawback, an AC module strategy is proposed. On this system, a small power DC-AC utility interactive inverter is mounted on each PV module individually and the inverter operates so as to generate the maximum power from the corresponding PV module. This paper presents a novel flyback-type utility interactive inverter circuit suitable for AC module systems. The feature of the proposed system are, (1) small in volume and light in weight, (2) stable AC current injection, (3) enabling a small DC capacitor. The effectiveness of the proposed system is clarified through the simulation and the experiments.

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Open-Phase Condition Detecting System for Transformer Connected Power Line in Nuclear Power Plant (원자력발전소 변압기 연결 선로 결상 검출 시스템)

  • Ha, Che-Wung;Lee, Do-Hwan
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.64 no.2
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    • pp.254-259
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    • 2015
  • On January 30, 2012 an auxiliary component of Byron Unit 2 was tripped on bus under voltage. The cause of the event was the failure of the C-phase insulator track for the Unit 2 station auxiliary transformer(SAT) revenue metering transformer. In addition to this event, other events have occurred at other plants resulting in an open-phase condition.[1] Therefore, Nuclear Regulatory Commission(NRC) has requested that not only nuclear power plant(NPP) operating company but also its Design Certification(DC) applicant have to prepare open-phase detecting system in their operating plants and design document. In this paper, various open-phase conditions are simulated in NPP using Electromagnetic Transient Program(EMTP) and Atpdraw, and open-phase condition detecting system is proposed for Main Transformer(MT), Unit Auxiliary Transformer(UAT) and SAT connected power line in NPP.

A Study on the Power Factor Improvement of DC Power Regenerating Systems (직류전력 회생시스템의 역률개선에 관한 연구)

  • 김경원;윤인식;서영민;윤덕용;홍순찬
    • The Transactions of the Korean Institute of Power Electronics
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    • v.6 no.5
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    • pp.410-415
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    • 2001
  • This paper proposes a new control scheme for the power factor improvement of DC power regenerating systems, which can regenerate the excessive DC power from DC bus line to AC supply in substations for traction systems. From the viewpoint of both power capacity and switching losses, the system is designed on the basis of three-phase square-wave inverters and composed of two inverters, zig-zag connected output transformers, and an AC filter. The output voltages of the regenerating system are not sinusoidal. However, regenerated complex power is analyzed on the basis of fundamental components and thus the reactive power produced by harmonics is not considered. Therefore, it is needed a new control scheme capable of controlling the reactive power nearly to zero even for nonsinusoidal cases. To verify the validity of the proposed control scheme, computer simulations are carried out. And the results show that the power factor is theoretically higher than 0.99.

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Development of Boost Chopper with Built New Renewable Energy in Grid-Connected Distributed Power System (승압 초퍼 기능이 내장된 새로운 태양광 발전용 파워컨디셔너의 개발)

  • Mun, Sang-Pil;Lee, Su-Haeng;Kim, Young-Mun
    • The Transactions of the Korean Institute of Electrical Engineers P
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    • v.63 no.4
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    • pp.361-367
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    • 2014
  • This paper is related to a new solar power conditioner for a built-in step-up chopper function. In the first step-up chopper proposed solar PV power conditioner for mutually connected in series with the input voltage of the bypass diodes are respectively connected to the positive terminal should install the mutual boosting chopper diode connected in series with the boost chopper switching element between the two power supply and at the same time the first and the second was connected to a second diode and a resonance inductor and a snubber capacitor in series with each other. And the common connection point between the bypass diode and the step-up chopper and the step-up chopper diode common connection point of the switching elements of the input voltage was set to the boost inductor for storing energy. In addition, between the step-up chopper and the step-up chopper diode and a switching element of a joint connection point of the first auxiliary diode and the second common connection point of the auxiliary diode was provided, the resonance capacitor. Between the step-up chopper and the step-up chopper diode and a switching element of a joint connection point and the common connection point of the resonance inductor snubber capacitor and connecting the third secondary diode, between two power supply lines is characterized by configuring the DC link capacitor bus lines in parallel. Therefore, it is possible to suppress the switching loss through, DC link bus lines, as well as there could seek miniaturization and weight reduction of the power conditioner itself by using a common capacitor of the non-polar non-polar electrolytic capacitor having a capacitor, the service life of the circuit can be extended and it is possible to greatly reduce the loss can be greatly improve the reliability of the product and the operation of the product itself.