• Title/Summary/Keyword: single phase inverter

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A New Single-Phase Asymmetrical Cascaded Multilevel DC-Link Inverter

  • Ahmed, Mahrous;Hendawi, Essam
    • Journal of Power Electronics
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    • v.16 no.4
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    • pp.1504-1512
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    • 2016
  • This paper presents a new single-phase asymmetrical cascaded multilevel DC-link inverter. The proposed inverter comprises two stages. The main stage of the inverter consists of multiple similar cells, each of which is a half-bridge inverter consisting of two switches and a single DC source. All cells are connected in a cascaded manner with a fixed neutral point. The DC source values are not made equal to increase the performance of the inverter. The second circuit is a folded cascaded H-bridge circuit operating at a line frequency. One of the main advantages of this proposed topology is that it is a modular type and can thus be extended to high stages without changing the configuration of the main stage circuit. Two control schemes, namely, low switching with selective harmonic elimination and sinusoidal pulse width modulation, are employed to validate the proposed topology. The detailed approach of each control scheme and switching pulses are discussed in detail. A 150W prototype of the proposed system is implemented in the laboratory to verify the validity of the proposed topology.

Clinical Application of Inverter type X-ray Generator (Inverter 방식(方式) X선장치(X線裝置)의 임상응용(臨床應用))

  • Lee, Sun-Sook;Huh, Joon;Lee, Jea-Won;Kim, Jung-Min
    • Journal of radiological science and technology
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    • v.15 no.1
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    • pp.107-113
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    • 1992
  • Inverter type X-ray apparatus has been introduced and used several hospitals. Principle of inverter type X-ray generators are such as to convert the frequency of commercial power supply to high frequency and to control the high voltages for X-ray tube. Inverter generators are now on the way for futher development to elliminate single phase generators and three phase generators. We compared inverter type X-ray apparatus with conventional single phase 2 peak and three phase 12 peak, apparatus in the following aspects X-ray out put to tube voltage, linearity of X-ray out put to mA, HVL according to mA contrast to kV.

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Multi-level Inverter Using 3-Phase isolated Transformers (3상 절연형 변압기를 이용한 다중레벨)

  • Lee, Hwa-Chun;Song, Sung-Gun;Park, Sung-Jun;Kim, Kwang-Heon
    • Proceedings of the KIEE Conference
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    • 2007.07a
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    • pp.1134-1135
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    • 2007
  • In this paper, we proposed the isolated multi-level inverter using 3-phase transformers. It makes possible to use a single DC power source due to employing low frequency transformers. In this inverter, the number of transformer could be reduced comparing with an exiting 3-phase multi-level inverter using single phase transformer. Also, using phase angle control method with switching frequency equal to output fundamental frequency, harmonics component of output voltage and switching losses can be reduced. Finally, we made a prototype inverter to clarify the proposed electric circuit and reasonableness of control signal.

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An Improved SVPWM Control of Voltage Imbalance in Capacitors of a Single-Phase Multilevel Inverter

  • Ramirez, Fernando Arturo;Arjona, Marco A.
    • Journal of Power Electronics
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    • v.15 no.5
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    • pp.1235-1243
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    • 2015
  • This paper presents a modified Space Vector Pulse Width Modulation Technique (SVPWM), which solves the well-known problem of voltage imbalance in the capacitors of a single-phase multilevel inverter. The proposed solution is based on the measurement of DC voltage levels at each capacitor of the inverter DC bus. The measurements are then used to adjust the size of the active vectors within the SVPWM algorithm to keep the voltage waveform sinusoidal regardless of any voltage imbalance on the DC link capacitors. When a voltage deviation exceeds a predetermined hysteresis band, the correspondent voltage vector is restricted to restore the voltage level to an acceptable threshold. Hence, the need for external voltage regulators for the voltage capacitors is eliminated. The functionality of the proposed algorithm is successfully demonstrated through simulations and experiments on a grid tied application.

A novel method for improvement of the output voltage waveform of a single phase VSI (단상전압원 인버어터의 새로운 출력파형 개선법)

  • Kim, Yeong-Min;Park, Hyun-Chul;Lee, Su-Weon;Yu, Chul-Ro
    • Proceedings of the KIEE Conference
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    • 1995.07a
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    • pp.400-402
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    • 1995
  • A novel type of single phase multi-step inverter is proposed, which has twelve-stepped levels of the output voltage. In this inverter the waveform of the output votage has smaller harmonic contents than those of a conventional six-step inverter. In this paper a new multi-step technique is analyzed. This new multi-step technique of the twelve-stewed single phase voltage source inverter has the advantage compared with the conventional six-step inverter, and the experimental results are proved by the calculation using spectrum-analyzer.

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SINGLE-PHASE CURRENT SOURCE INVERTER WITH PULSE AREA MODULATION SCHEME FOR SOLAR POWER CONDITIONER

  • Hirachi, K.;Matsumoto, K.;Ishitobi, M.;Ishibashi, M.;Nakaoka, M.
    • Proceedings of the KIPE Conference
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    • 1998.10a
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    • pp.724-729
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    • 1998
  • In general, a single-phase current-fed PWM inverter using IGBTs has some unique advantages for small scale distributed utility-interactive power supply system as compared with voltage-fed PWM inverter. In particular, this is more suitable and acceptable for a non-isolated type utility-interactive power conditioner, which is going to be widely used for residential solar photovoltaic (PV) power generation system in Japan. However, this current-fed PWM inverter has a significant disadvantage. The output current of this inverter includes large harmonic contents when the inductance of smoothing reactor in its DC side is not large enough to eliminate its current ripple components of this inverter. In order to overcome this problem, a new conceptual pulse area modulation scheme for this inverter is introduced in difference with conventional PWM strategy. This paper presents a new effective control implementation of this PV power conditioner which is able to reduce the harmonic component in the output current produced by the single-phase current-fed PWM inverter even when the ripple current in the smoothing DC reactor is relatively large. The operating principle of the proposed control strategy introdued for this inverter system is described, and its simulation results are evaluated and discussed herein.

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A Study on the Voltage Control of a Single Phase Full-bridge Inverter using SPWM Driving Method (SPWM 구동 방식을 이용한 단상 풀 브리지 인버터의 전압 제어에 대한 연구)

  • Ko, Yun-Seok
    • The Journal of the Korea institute of electronic communication sciences
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    • v.12 no.5
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    • pp.851-858
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    • 2017
  • In this study, the voltage control system of a single phase full bridge inverter was designed based on the SPWM driving method. The voltage control system consists of a single-phase full-bridge inverter, a PI controller for linearly compensating the error between the reference voltage and the output voltage, a PWM driving circuit for generating the gate signal using the SPWM method from the controller signal, and an LC filter for filtering the inverter output voltage waveform into sinusoidal waveform. Finally, the voltage control system of a single-phase full-bridge inverter based on the PWM driving method was modeled using EMTP-RV and by showing that the output voltage accurately converges the reference voltage through several simulation examples, the validity of the control system design was verified.

A Study on Microprocessor-Based 3-Phase VVVF Inverter (마이크로 프로세서를 사용한 3상 VVVF 인버터에 관한 연구)

  • 한상수;김재호;최우승
    • Journal of the Korean Institute of Telematics and Electronics
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    • v.27 no.6
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    • pp.879-885
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    • 1990
  • The geometrical algorithm for generating a 3-phase SPWM signal for VVVF (Variable Voltage, Variable Frequency) inverter drives is proposed. In this techniques, it is suitable for micro-processor based implementation since the pulsewiths are computable in real time from simple analytic expressions. System hardware consists of the inverter circuit and the 3-phase SPWM signal generating circuit. The inverter circuit is a 3-phase SPWM signal generating circuit is single board micro-processor consisting of Z-80A CPU, EPROMXI, CTC, PIO. The method of controlling VVVF at the inverter output is discussed here.

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A New On-Line Dead-Time Compensator for Single-Phase PV Inverter (단상 PV 인버터용 온라인 데드타임 보상기 연구)

  • Vu, Trung-Kien;Lee, Sang-Hoey;Cha, Han-Ju
    • The Transactions of the Korean Institute of Power Electronics
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    • v.17 no.5
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    • pp.409-415
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    • 2012
  • This paper presents a new software-based on-line dead-time compensation technique for a single-phase grid-connected photovoltaic (PV) inverter system. To prevent a short circuit in the inverter arms, a switching delay time must be inserted in the pulse width modulation (PWM) signals. This causes the dead-time effect, which degrades the system performance around zero-crossing point of the output current. To reduce the dead-time effect around the zero-crossing point of grid current, a harmonic mitigation of grid current is used as an additional part of the synchronous frame current control scheme. This additional task mitigates the harmonic components caused by the dead-time from the grid current. Simulation and experimental results are shown to verify the effectiveness of the proposed dead-time compensation method in the single-phase grid-connected inverter system.

PWM for Single Phase Inverter with 4 - Level Output (4 - 레벨 출력을 갖는 단상 인버어터의 PWM)

  • Jang, Hyun-Soo;Chin, Myung-Churl;Lee, Kwang-Won
    • Proceedings of the KIEE Conference
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    • 1989.07a
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    • pp.527-530
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    • 1989
  • In order to reduce harmonic contents in the inverter output, various PWM ( pulse with modulation ) techniques have been utilized. This paper suggests a single phase inverter with 4-level output and its PWM control scheme. The proposed 4-level output inverter shows better performence than the 3-level output one in respects of the current error and the switching frequency.

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