• Title/Summary/Keyword: Z-Source

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PCS Design for Grid-Connected PV System Using Z-Source Inverter (Z-소스 인버터를 이용한 계통연계형 PV 시스템용 PCS 설계)

  • Park, Joung-Hyoung;Kim, Heung-Geun;Chun, Tae-Won;Nho, Eui-Cheol
    • Proceedings of the KIPE Conference
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    • 2007.11a
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    • pp.94-96
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    • 2007
  • Z-소스 인버터는 기존의 전압원 인버터나 전류원 인버터가 가지고 있는 단점들을 효율적으로 극복하고 있다. 이러한 장점을 가지고 있는 Z-source 인 버터를 10kW급 계통연계형 태양광 발전 시스템용 PCS에 적용시키기 위하여 그에 필요한 제어알고리즘을 구현하고 모의 실험을 통하여 타당성을 검증한다.

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Comparison of the Output Current THDi of Single-Phase Embedded Typical Z-Source Inverter and Embedded Quasi Z-Source Inverter (단상 임베디드 Typical Z-소스 인버터와 임베디드 Quasi Z-소스 인버터의 출력전류 THDi 비교)

  • Oh, Seung-Yeol;Kim, Se-Jin;Jung, Young-Gook;Park, Hee-Jae;Lim, Young-Cheol
    • Proceedings of the KIPE Conference
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    • 2012.11a
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    • pp.207-208
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    • 2012
  • 본 논문에서는 임베디드 Z-소스 컨버터 2대를 병렬 연결하여 승압 및 강압 기능을 가지는 단상 인버터의 THDi를 비교 분석하였다. 임베디드 Z-소스 인버터는 임베디드 Typical Z-소스 인버터와 임베디 Quasi Z-소스 인버터로 구분되며 각 인버터의 단락비에 따른 출력전류 THDi를 비교하였다. THDi의 비교를 위해 실험 세트를 구성하고 실험 데이터 이용해 비교 분석 하였다.

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Improved LCCT Z-Source DC-AC Inverter for Ripple Reduction of Input Current and Capacitor Voltage (입력전류와 커패시터 전압의 맥동저감을 위한 개선된 LCCT Z-소스 DC-AC 인버터)

  • Shin, Yeon-Soo;Jung, Young-Gook;Lim, Young-Cheol
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.61 no.10
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    • pp.1432-1441
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    • 2012
  • In this study, an improved LCCT(Inductor-Capacitor-Capacitor-Trans) Z-source inverter(Improved LCCT ZSI) with characteristics of Quasi Z-source inverter(QZSI) and LCCT Z-source inverter(LCCT ZSI) is proposed. The proposed inverter can also reduce the voltage stress and input current/capacitor voltage ripples compared with conventional LCCT ZSI and Quasi ZSI. A two winding trans in Z-impedance network of the conventional LCCT ZSI is replaced by a three winding trans in the proposed inverter. To verify the validity of the proposed inverter, a DSP controlled hardware was made and PSIM simulation was executed for each method. Comparing the current and voltage ripples of each method under the condition of input DC voltage 70[V] and output AC voltage 76[Vrms], the input current and capacitor voltage ripple factors of the proposed inverter were low as 11[%] and 1.4[%] respectively. And, for generation of the same output AC voltage of each method, voltage stress of the proposed inverter was low as 175[V] under the condition of duty ratio D=0.15. As mentioned above, we could know that the proposed inverter have the characteristics of low voltage stress, low ripple factor and low operation duty ratio compared with the conventional methods. Finally, the efficiency according to load change/duty ratio and the transient state characteristics were discussed.

Input AC Voltage Sensorless Control for a Three-Phase Z-Source PWM Rectifier (3상 Z-소스 PWM 정류기의 입력 AC 전압 센서리스 제어)

  • Han, Keun-Woo;Jung, Young-Gook;Lim, Young-Cheol
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.62 no.3
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    • pp.355-364
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    • 2013
  • Respect to the input AC voltage and output DC voltage, conventional three-phase PWM rectifier is classified as the voltage type rectifier with boost capability and the current type rectifier voltage with buck capability. Conventional PWM rectifier can not at the same time the boost and buck capability and its bridge is weak in the shoot- through state. These problems can be solved by Z-source PWM rectifier which has all characteristic of voltage and current type PWM rectifier. By shoot-through duty ratio control, the Z-source PWM rectifier can buck and boost at the same time, also, there is no need to consider the dead time. This paper proposes the input AC voltage sensorless control method of a three-phase Z-source PWM rectifier in order to accomplish the unity input power factor and output DC voltage control. The proposed method is estimated the input AC voltage by using input AC current and output DC voltage, hence, the sensor for the input AC voltage detection is no needed. comparison of the estimated and detected input AC voltage, estimated phase angle of the input voltage, the output DC voltage response for reference value, unity power factor, FFT(Fast Fourier Transform) of the estimated voltage and efficiency are verified by PSIM simulation.

Characteristics of Transient State and Stress of Three-Phase Switched Trans Z-Source DC/AC Power Converter (3상 Switched Trans Z-소스 직류/교류 전력변환기의 스트레스 및 과도상태 특성)

  • Lim, Young-Cheol;Kim, Se-Jin;Jung, Young-Gook
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.26 no.4
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    • pp.57-66
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    • 2012
  • When typical Z-source DC/AC inverter(ZSI) is operated in high voltage gain area, because of its high duty ratio, voltage and current stress in Z-network of typical ZSI are increased. This paper proposes a new switched trans ZSI(STZSI) with two switched trans cells which consist of one trans and two diodes. To confirm the operation performance of the proposed system, the PSIM simulation is performed for typical ZSI, switched inductor ZSI and the proposed STZSI. Voltage / current stress and transient state characteristics of each method are compared under the condition of DC input voltage 100[V] and output phase voltage 66[Vrms]. As a result, we confirmed that transient state of the proposed STZSI is short compared with the conventional ZSI because the high voltage gain is obtained using the same duty ratio, also a low duty ratio is required for the same output voltage. Finally, we could know the proposed system have low voltage and current stress in Z-network compared with the conventional ZSI.

Output AC Voltage Control of a Three-Phase Z-Source Inverter by the Voltage Gain and Modulation Index Control (전압 이득과 변조지수 제어에 의한 3상 Z-소스 인버터의 출력 교류 전압 제어)

  • Kim, Se-Jin;Jung, Young-Gook;Lim, Young-Cheol;Yang, Seung-Hak
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.59 no.11
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    • pp.1996-2005
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    • 2010
  • This paper proposes a new method for constant control of the output AC voltage of a voltage-fed three phase Z-source inverter (ZSI), in case of Z-network DC voltage variation or heavy change of load. The modulation index for the reference output AC voltage of ZSI can be calculated by the basic definition of ZSI, the input DC voltage and capacitor voltage of Z-network. And, the output AC voltage of ZSI is controlled by the modified space vector modulation (SVM) with the calculated modulation index. By the proposed method, the modulation index of output AC voltage is closely following in the reference modulation index. The validity of the proposed method is verified using PSIM simulation. In case which the input DC voltage of ZSI is heavily changed from 100[V] to 70[V] (or to 150[V]) and in case which load is changed from $30[\Omega]$ to $10[\Omega]$, we confirmed that the output AC voltage of ZSI is constantly controlled by the proposed method because the modulation index of ZSI is also simultaneously changed. Finally, FFT and %THD of the output voltage and current of ZSI by the proposed method are analyzed.

Z-Source Dynamic Harmonic Filter with Four Switches (4개 스위치를 갖는 Z-소스 동적 고조파 필터)

  • Qiu, Xiao-Dong;Jung, Young-Gook;Lim, Young-Cheol
    • Proceedings of the KIPE Conference
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    • 2013.11a
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    • pp.254-255
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    • 2013
  • In this paper, four switches three-phase Z-source dynamic harmonic filter is proposed. It has many advantages, such as reduction of the cost, switching loss and smaller drive circuit. In order to reduction harmonics, new PWM modulation technique with a variable index has been suggested that in comparison with a fixed index type has more capability. The paper presents an application of direct current control(DCC) method in Z-source dynamic harmonic filter to reduce the harmonics generated by the non-linear load. The experimental results will verify the validity of the proposed method.

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A Parallel Operation System of the Z-Source Active Power Filter with Fuel Cells System (연료전지 Z-소스 능동전력필터의 병렬운전 시스템)

  • Oum, J.H.;Jung, Y.G.;Lim, Y.C.
    • Proceedings of the KIEE Conference
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    • 2006.04b
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    • pp.372-375
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    • 2006
  • This paper proposes a parallel operation system of the Z-source active power filter using one fuel cells(FC) system. The proposed system is composed of two Z-source inverters operating in parallel only one PEM(Polymer Electrolyte Membrane)FC system. Also, as the control algorithm of the active power filter, a single phase P-Q theory and PI control are adopted. The effectiveness of the proposed the system is verified by the PSIM simulation in the steady state and the transient state.

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Voltage Variation Compensation of Power Distribution System Using a Quasi Z-Source Dynamic Voltage Restorer (Quasi Z-소스 동적 전압 보상기를 사용한 배전계통의 전압변동 보상)

  • Oum, Jun-Hyun;Jung, Young-Gook;Lim, Young-Cheol
    • Proceedings of the KIPE Conference
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    • 2011.07a
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    • pp.400-401
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    • 2011
  • 본 논문에서는 단상 Quasi Z-source AC/AC converter 2대의 출력을 직렬로 연결하여 6.6[kV]/60[Hz]의 배전계통의 전압변동을 보상하는 시스템을 제안하였다. 제안된 시스템은 기존의 단상 Quasi Z-source AC/AC converter의 전압변동 보상기가 보상 못 하는 구간, 즉 배전계통에서 많이 발생하는 50[%] 미만의 전압 sag를 보상할 수 있는 장점이 있다. PSIM시뮬레이션에 의하여, 제안된 방법은 정상전압에 대하여 연속적으로 전압변동이 발생하여도 보상할 수 있었다.

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Four Switch Three-Phase Z-Source Active Power Filter (Four-Switch 3상 Z-소스 능동전력필터)

  • Qiu, Xiao-Dong;Jung, Young-Gook;Lim, Young-Cheol
    • Proceedings of the KIPE Conference
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    • 2013.07a
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    • pp.224-225
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    • 2013
  • This paper describes the four switch three-phase Z-source active power filter. This novel configuration has many advantages like reduction of cost, switching loss and smaller drive circuit. The paper presents an application of direct current control(DCC) method in a three-phase parallel Z-source active power filter to reduce the harmonics generated by the nonlinear load. The compensation principles and dynamics of the system are discussed in detail. The results show that the proposed control strategy is feasible and efficient.

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