• Title/Summary/Keyword: Multi level inverter

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The study of New multi-level inverter with simple structure (간단한 구조를 갖는 새로운 방식의 멀티 레벨 인버터에 관한 연구)

  • Lee, Byung-Jin;Jung, Byung-Chang;Ru, Chul-Ro;Lee, Seong-Ryong;Han, Woo-Yong
    • Proceedings of the KIEE Conference
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    • 1998.07f
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    • pp.1963-1965
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    • 1998
  • In this paper, a new simplified configuration for a multi-level PWM inverter is proposed. The proposed inverter consists of an auxiliary circuit with one switching device, and 3 phase full-bridge inverter. The proposed inverter, in spite of reduction of the switching devices, offers characteristics similar to the NPC(Neutral - point - clamped)- PWM inverter. Also, since the reduction of the switching devices, the control strategy is simplified. And switching loss is reduced. In addition to, it is possible that reliable DC level voltage than former multi-level inverter. And load power application is same to conventional NPC-PWM inverter. The performance of the system is verified by simulation. In this paper, show the simulation result of the single phase full bridge inverter application.

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Low Frequency Multi-Level Switching Strategy Based on Phase-Shift Control Methods

  • Lee, Sang-Hun;Song, Sung-Geon;Park, Sung-Jun
    • Journal of international Conference on Electrical Machines and Systems
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    • v.1 no.3
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    • pp.366-371
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    • 2012
  • In this paper, we propose an electric circuit using one common-arm of H-Bridge inverters to reduce the number of switching components in the multi-level inverter combined with H-Bridge inverters and transformers. And furthermore, we suggested a new multi-level PWM inverter using PWM level to reduce THD (Total Harmonic Distortion). We use a phase-shift switching method that has the same rate of usage at each transformer. Also, we test the proposed prototype 9-level inverter to clarify the proposed electric circuit and reasonableness of the control signal for the proposed multi-level PWM inverter.

Novel Multi-Level PWM Inverter Using The Common Arm (공통암을 이용한 새로운 다중레벨 PWM 인버터)

  • .Song S.G;Yu tao;Lee S.H.;Cho S.E.;Moon C.J.;Kim C.U;Park S.J.
    • The Transactions of the Korean Institute of Electrical Engineers B
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    • v.54 no.4
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    • pp.195-200
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    • 2005
  • In this paper, we proposed the electric circuit using one common arm of H-Bridge Inverters to reduce the number of switching component in multi-level inverter combined with H-Bridge Inverters and Transformers. and furthermore we suggested the new multi-level PWM inverter using PWM level to reduce THD(Total Harmonic Distortion). and we used the switching method that can be same rate of usage at each transformer. Also, we tested the proposed prototype 9-level inverter to clarify the proposed electric circuit and reasonableness of control signal for the proposed multi-level PWM inverter.

Switching Frequency Reducing Method of Multi-level Inverter Using Phase Shift Control (상신호 변위기법을 이용한 다중레벨 인버터의 스위칭주파수 저감기법)

  • Park, Noh-Sik;Song, Sung-Geun;Park, Sung-Jun;Nam, Hae-Kon;Kang, Feel-Soon;Kim, Cheul-U
    • Proceedings of the KIEE Conference
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    • 2005.07b
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    • pp.1477-1479
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    • 2005
  • In this paper, we proposed the electric circuit using one common arm of H-Bridge inverters to reduce the number of switching component in multi-level inverter combined with H-Bridge Inverters and Transformers. and furthermore we suggested the new multi-level PWM inverter using PWM level to reduce THD(Total Harmonic Distortion) and we used the switching method that can be same rate of usage at each transformer. Also, we tested the proposed prototype 15-level inverter to clarify the proposed electric circuit and reasonableness of control signal for the proposed multi-level PWM inverter.

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The Analysis of Conduction and Switching Losses in Multi-Level Inverter System (멀티레벨 인버터 시스템의 전도손실과 스위칭손실 해석)

  • 金 兌 珍;姜 岱 旭;;玄 東 石
    • The Transactions of the Korean Institute of Power Electronics
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    • v.7 no.2
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    • pp.111-120
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    • 2002
  • The multi-level inverter system is very promising in ac drives, when both reduced harmonic contents and high power are required. In case of multi-level inverter system, the loss of switch devices cannot be analyzed by conventional methods. The reason is that the loss of each the switch device is different from one another unlike 2-level. In this paper, a simple and accurate method of computing conduction and switching loss is proposed for multi-level inverter system. The validity of the proposed method is proven for 3-level and 4-revel diode clamped inverter system.

Design and Implementation of a Multi Level Three-Phase Inverter with Less Switches and Low Output Voltage Distortion

  • Ahmed, Mahrous E.;Mekhilef, Saad
    • Journal of Power Electronics
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    • v.9 no.4
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    • pp.593-603
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    • 2009
  • This paper proposes and describes the design and operational principles of a three-phase three-level nine switch voltage source inverter. The proposed topology consists of three bi-directional switches inserted between the source and the full-bridge power switches of the classical three-phase inverter. As a result, a three-level output voltage waveform and a significant suppression of load harmonics contents are obtained at the inverter output. The harmonics content of the proposed multilevel inverter can be reduced by half compared with two-level inverters. A Fourier analysis of the output waveform is performed and the design is optimized to obtain the minimum total harmonic distortion. The full-bridge power switches of the classical three-phase inverter operate at the line frequency of 50Hz, while the auxiliary circuit switches operate at twice the line frequency. To validate the proposed topology, both simulation and analysis have been performed. In addition, a prototype has been designed, implemented and tested. Selected simulation and experimental results have been provided.

Single Phase 5-level Inverter with DC-link Switches (DC링크 스위치를 갖는 단상 5레벨 인버터)

  • Choi, Young-Tae;Sun, Ho-Dong;Park, Min-Young;Kim, Heung-Geun;Chun, Tea-Won;Nho, Eui-Cheol
    • The Transactions of the Korean Institute of Power Electronics
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    • v.16 no.3
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    • pp.283-292
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    • 2011
  • This paper proposed a new multi-level inverter topology based on a H-bridge with two switches and two diodes connected to the DC-link. The output voltage of the proposed topology is quite closer to a sinusoidal waveform compared with a typical single phase inverter. The proposed multi-level inverter is applicable to a power conditioning system for renewable energy sources, and it can be also used as a building block of a cascaded multi-level inverter for a high voltage application. In case of conventional H-bridge type or NPC type multi-level inverter, 8 controllable switches are used to obtain a 5 level output voltage, but the proposed multi-level inverter requires only 6 controllable switches. Thus the circuit configuration is quite simple, reliable and cost-effective implementation is possible. The efficiency can be improved owing to the reduction of the switching loss. A new PWM method based on POD modulation is suggested which requires only one carrier signal. The switching sequence to make the capacitor voltage balanced is also considered. The feasibility is studied through simulation and experiment.

Equivalent RMS Sine-wave Modulation of the Step-pulse type Multi-level Inverter (스텝펄스형 멀티레벨 인버터를 위한 RMS 등가형의 새로운 사인파 변조법)

  • Jin, Sun-Ho;Kwak, Jun-Ho;Jo, Kwan-Jun;Oh, Jin-Seok
    • The Transactions of the Korean Institute of Power Electronics
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    • v.11 no.3
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    • pp.239-246
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    • 2006
  • This paper suggests a new modulation strategy for step pulse type multi-level inverter. The proposed strategy is simple to determine the switching angles without regard to increase of levels. Designed to extract the equivalent RMS value compared to ideal sine wave from inverter, it can be applied effectively to high level step pulse inverter. Also this paper proposed modulation strategy for modified H-bridge 13 level inverter which has different cell source voltages with simulation and experiment. The modulation characteristics from simulation and experiment, agreed very well with tracing sine wave about modified structure of cascaded H-bridge multi-level inverter.

Harmonic Optimization Techniques in Multi-Level Voltage-Source Inverter with Unequal DC Sources

  • Aghdam, M. Ghasem Hosseini;Fathi, S. Hamid;Gharehpetian, Gevorg B.
    • Journal of Power Electronics
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    • v.8 no.2
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    • pp.171-180
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    • 2008
  • One of the major problems in electric power quality is the harmonic contents. There are several methods of indicating the quantity of harmonic contents. The most widely used measure is the total harmonic distortion (THD). Various switching techniques have been used in static converters to reduce the output harmonic content. This paper presents and compares the two harmonic optimization techniques, known as optimal minimization of the total harmonic distortion (OMTHD) technique and optimized harmonic stepped-waveform (OHSW) technique used in multi-level inverters with unequal dc sources. Both techniques are very effective and efficient for improving the quality of the inverter output voltage. First, we describe briefly the cascaded H-bridge multi-level inverter structure. Then, we present the switching algorithm for the inverter based on OHSW and OMTHD techniques. Finally, the results obtained for the two techniques are analyzed and compared. The results verify the effectiveness of the both techniques in multi-level voltage-source inverter with non-equal dc sources, clarifying the advantages of each technique.

Study on T-Type Multi Level Inverter for UIPV System (계통연계형 태양광발전 시스템을 위한 T-타입 타상 인버터에 관한 연구)

  • Bayasgalan, Bayasgalan;Ryu, Ji-Su;Lee, Sang-Ho
    • Proceedings of the KIPE Conference
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    • 2012.07a
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    • pp.313-314
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    • 2012
  • In this paper presents study of T-Type multi level inverter for utility interactive photo voltaic inverter. In order to increase efficiency and performance of utility interactive photo voltaic (UIPV) system, we propose multi level PCS topology, such as T-type inverter. The control algorithm for utility interactive inverter is implemented by simulation and experimentation, which includes dc-bus and midpoint voltage controller, ac-grid current controller and PLL algorithm.

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