• Title/Summary/Keyword: Multi level inverter

Search Result 188, Processing Time 0.021 seconds

A Symmetric Carrier Technique of CRPWM for Voltage Balance Method of the Flying Capacitor Multi-level Iinverter (플라잉 커패시터 멀티-레벨 인버터의 커패시터 전압 균형을 이루기 위한 캐리어 비교방식을 이용한 캐리어 대칭 기법)

  • Jeon J.H.;Kim T.J.;Kang D.W.;Hyun D.S.
    • Proceedings of the KIPE Conference
    • /
    • 2003.07b
    • /
    • pp.606-610
    • /
    • 2003
  • This paper presents a simple carrier symmetric method for the voltage balance of flying capacitors in FCMLI(flying capacitor multi-level inverter). To achieve the voltage balance of flying capacitors, the utilization of each carrier must be balanced during a half-cycle of the switching period such as PSPWM(Phase-Shifted PWM). However, the CRPWM(Carrier Redistribution PWM) method causes the fluctuation of flying capacitor voltages because the balanced utilization of carriers is not achieved. Moreover, it does not consider that the load current change has an influence on flying capacitor voltages by assuming that the current flows Into the load. To overcome the drawbacks of CRPWM, it is modified by the technique that carriers of each band are disposed symmetrically at every fundamental period. Firstly, the CRPWN method is reviewed and the theory on voltage balance of flying capacitors is analyzed. The proposed method Is introduced and is verified through the experiment result.

  • PDF

Shunt Active Filter for Multi-Level Inverters Using DDSRF with State Delay Controller

  • Rajesh, C.R.;Umayal, S.P.
    • Journal of Power Electronics
    • /
    • v.18 no.3
    • /
    • pp.863-870
    • /
    • 2018
  • The traditional power control theories for the harmonic reduction methods in multilevel inverters are found to be unreliable under unbalanced load conditions. The unreliability in harmonic mitigation is caused by voltage fluctuations, non-linear loads, the use of power switches, etc. In general, the harmonics are reduced by filters. However, such devices are an expensive way to provide a smooth and fast response to secure power systems during dynamic conditions. Hence, the Decoupled Double Synchronous Reference Frame (DDSRF) theory combined with a State Delay Controller (SDC) is proposed to achieve a harmonic reduction in power systems. The DDSRF produces a sinusoidal harmonic that is the opposite of the load harmonic. Then, it injects this harmonic into power systems, which reduces the effect of harmonics. The SDC is used to reduce the delay between the compensation time for power injection and the generation of a reference signal. The proposed technique has been simulated using MATLAB and its reliability has been verified experimentally under unbalanced conditions.

H-Bridge Multi-Level Inverter System (H-Bridge 멀티-레벨 인버터 시스템)

  • Yun, H.M.;Jeon, J.H.;Lee, J.P.;Jang, D.J.;Na, S.H.;Kwon, B.H.
    • Proceedings of the KIPE Conference
    • /
    • 2005.07a
    • /
    • pp.313-316
    • /
    • 2005
  • 본 논문은 대용량 진력변환장치인 멀티-레벨 인버터 시스템에서 출력 전압가변이 손쉬운 HBML(H-Bridge Multi-Level) 인버터의 Master와 Cell 제어기 구성에 관한 것이다. HBML 인버터는 각각의 단위 Cell을 저압에서 사용하는 인버터로 구성하면, 구조적으로 풀-브릿지(Full-Bridge) 인버터를 캐스케이드 방식으로 연결하여 고압출력을 얻을 수 있는 토폴로지이다. 시스템에서 Master와 Cell의 제어 처리를 한곳에 집중하지 않는 분산 제어 방식을 적용하여 통신 Data를 최적화하도록 구성하고, 이를 바탕으로 두 제어기를 고성능 원-칩(One-Chip) DSP로만 설계하였다. 모든 외부 모듈을 내장한 CPU로 제어기가 구성될 경우, 외부 노이즈에 강하며, 추가되는 하드웨어 결선을 최소화할 수 있다. 본 논문에서는 HBML 인버터 출력 생성 시 반드시 요구되는 출력 PWM 동기 및 위상전이(Phase Shift)를 각 제어기 자체에 내장된 모듈만을 이용해서 구현하였다.

  • PDF

A Single-Phase Hybrid Multi-Level Converter with Less Number of Components

  • Kim, Ki-Mok;Moon, Gun-Woo
    • Proceedings of the KIPE Conference
    • /
    • 2018.07a
    • /
    • pp.105-107
    • /
    • 2018
  • This paper presents a new hybrid multilevel converter topology, which consists of a combination of the series connected switched capacitor units with boost ability, and an H-bridge with T-type bidirectional switches. The proposed converter boosts the input voltage without any bulky inductors, and has the small number of components, which can make the size and cost of a power converter greatly reduced. The output filter size and harmonics are also reduced by the high quality multilevel output. In addition, there is no need for complicated methods to balance the capacitor voltage. Simulation and experimental results with a nine-level converter system are presented to validate the proposed topology and modulation method.

  • PDF

Identification of Open-Switch and Short-Switch Failure of Multilevel Inverters through DWT and ANN Approach using LabVIEW

  • Parimalasundar, E.;Vanitha, N. Suthanthira
    • Journal of Electrical Engineering and Technology
    • /
    • v.10 no.6
    • /
    • pp.2277-2287
    • /
    • 2015
  • In recent times, multilevel inverters are given high priority in many large industrial drive applications. However, the reliability of multilevel inverters are mainly affected by the failure of power electronic switches. In this paper, open-switch and short-switch failure of multilevel inverters and its identification using a high performance diagnostic system is discussed. Experimental and simulation studies were carried out on five level cascaded H-Bridge multilevel inverter and its output voltage waveforms were analyzed at different switch fault cases and at different modulation index values. Salient frequency domain features of the output voltage signal were extracted using the discrete wavelet transform multi resolution signal decomposition technique. Real time application of the proposed fault diagnostic system was implemented through the LabVIEW software. Artificial neural network was trained offline using the Matlab software and the resultant network parameters were transferred to LabVIEW real time system. In the proposed system, it is possible to precisely identify the individual faulty switch (may be due to open-switch (or) short-switch failure) of multilevel inverters.

A Study on Luminescence and Discharge Characteristics of EEFL (External Electrode Fluorescent Lamp) Driven by Square Wave for Large sized-LCD panel (대형 액정디스플레이패널의 백라이트용 외부 전극 형광램프의 구형파 구동 방법에 대한 휘도, 방전 특성 연구)

  • Cho Dae-Youn;Lee Yeon-Jae;Cho Kyu-Min;Oh Won-Sik;Moon Gun-Woo;Lee Sang-Gil;Park Mun-Soo
    • Proceedings of the KIPE Conference
    • /
    • 2006.06a
    • /
    • pp.409-412
    • /
    • 2006
  • EEFL can be driven by square wave driving method. A square wave is applied directly to both ends of EEFL by cascaded multi-stage full-bridge inverter. The various current shapes of lamp are achieved by various inductors between lamp and inverter. In this paper, it is newly investigated that the area of current directly influences the luminance. Furthermore, the 3-level square wave is considered to drive EEFL with self-discharge characteristics. The highest luminance efficiency is achieved by properly controlling the rate of self-discharge usage.

  • PDF

Probabilistic Reliability Based HVDC Expansion Planning of Power System Including Wind Turbine Generators (풍력발전기를 포함하는 전력계통에서의 신뢰도 기반 HVDC 확충계획)

  • Oh, Ungjin;Lee, Yeonchan;Choi, Jaeseok;Yoon, Yongbeum;Kim, Chan-Ki;Lim, Jintaek
    • The Transactions of The Korean Institute of Electrical Engineers
    • /
    • v.67 no.1
    • /
    • pp.8-15
    • /
    • 2018
  • New methodology for probabilistic reliability based grid expansion planning of HVDC in power system including Wind Turbine Generators(WTG) is developed in this paper. This problem is focused on scenario based optimal selection technique to decide best connection bus of new transmission lines of HVDC in view point of adequacy reliability in power system including WTG. This requires two kinds of modeling and simulation for reliability evaluation. One is how is reliability evaluation model and simulation of WTG. Another is to develop a failure model of HVDC. First, reliability evaluation of power system including WTG needs multi-state simulation methodology because of intermittent characteristics of wind speed and nonlinear generation curve of WTG. Reliability methodology of power system including WTG has already been developed with considering multi-state simulation over the years in the world. The multi-state model already developed by authors is used for WTG reliability simulation in this study. Second, the power system including HVDC includes AC/DC converter and DC/AC inverter substation. The substation is composed of a lot of thyristor devices, in which devices have possibility of failure occurrence in potential. Failure model of AC/DC converter and DC/AC inverter substation in order to simulate HVDC reliability is newly proposed in this paper. Furthermore, this problem should be formulated in hierarchical level II(HLII) reliability evaluation because of best bus choice problem for connecting new HVDC and transmission lines consideration. HLII reliability simulation technique is not simple but difficult and complex. CmRel program, which is adequacy reliability evaluation program developed by authors, is extended and developed for this study. Using proposed method, new HVDC connected bus point is able to be decided at best reliability level successfully. Methodology proposed in this paper is applied to small sized model power system.

Line-Interactive DVR Using Multi-Level H-Bridge Inverter (멀티-레벨 H-Bridge 인버터를 이용한 Line-Interactive DVR)

  • Kang Dae-Wook;Woo Sung-Min;Kim Tae-Jin;Choi Chang-Ho;Hyun Dong-Seok
    • Proceedings of the KIPE Conference
    • /
    • 2001.12a
    • /
    • pp.139-143
    • /
    • 2001
  • Recently, the interest on power quality has been hot issue. The equipments cause voltage disturbance and has become more sensitive to the voltage disturbance. This paper deals with 5-Level H-Bridge Line-Inter active Dynamic Voltage Restorer(LIDVR) system. The LIDVR has following advantages in comparison with the DVR with series injection transformer It has the power factor near to unity under normal source voltage, can compensate the harmonic current of the load and the instant interruption, and has the fast response. First, the construction, the operation mode and algebraic modeling of LIDVR are reviewed. And then a voltage controller is proposed to get sinusoidal load voltage with constant amplitude. To find PWM method suitable for H-Bridge converter, two PWM methods are compared and analyzed. Finally, simulation results verify the proposed 5-level H-Bridge LIDVR system.

  • PDF

Selective Harmonic Elimination in Multi-level Inverters with Series-Connected Transformers with Equal Power Ratings

  • Moussa, Mona Fouad;Dessouky, Yasser Gaber
    • Journal of Power Electronics
    • /
    • v.16 no.2
    • /
    • pp.464-472
    • /
    • 2016
  • This study applies the selective harmonic elimination (SHE) technique to design and operate a regulated AC/DC/AC power supply suitable for maritime military applications and underground trains. The input is a single 50/60 Hz AC voltage, and the output is a 400 Hz regulated voltage. The switching angles for a multi-level inverter and transformer turns ratio are determined to operate with special connected transformers with equal power ratings and produce an almost sinusoidal current. As a result of its capability of directly controlling harmonics, the SHE technique is applicable to apparatus with congenital immunity to specific harmonics, such as series-connected transformers, which are specially designed to equally share the total load power. In the present work, a single-phase 50/60 Hz input source is rectified via a semi-controlled bridge rectifier to control DC voltage levels and thereby regulate the output load voltage at a constant level. The DC-rectified voltage then supplies six single-phase quazi-square H-bridge inverters, each of which supplies the primary of a single-phase transformer. The secondaries of the six transformers are connected in series. Through off-line calculation, the switching angles of the six inverters and the turns ratios of the six transformers are designed to ensure equal power distribution for the transformers. The SHE technique is also employed to eliminate the higher-order harmonics of the output voltage. A digital implementation is carried out to determine the switching angles. Theoretical results are demonstrated, and a scaled-down experimental 600 VA prototype is built to verify the validity of the proposed system.

The Study on the Power Cell Operation for H-Bridge Multi-level Inverter (H-브릿지 멀티레벨 인버터 개별 전력 셀 동작에 관한 연구)

  • Kim, Bong-Suck;Lim, Ik-Hun;Lee, Joo-Hyun;Ryu, Ho-Seon;Park, Young-Min
    • Proceedings of the KIEE Conference
    • /
    • 2006.10d
    • /
    • pp.182-184
    • /
    • 2006
  • 본 논문에서는 고압전동기를 직접 드라이브 할 수 있는 H-브릿지 멀티레벨 인버터의 개별 전력 셀의 동작원리에 대해서 고찰하였다. H-브릿지 멀티레벨 인버터는 여러 개의 단상 Power Cell을 직렬로 연결함으로써 저전압 전력용 반도체를 사용하여 고전압을 얻을 수 있고, 정현파에 가까운 출력전압 파형을 얻을 수 있는 멀티레벨 인버터 토폴로지이다. 480V, 180kVA H-브릿지 멀티레벨 인버터를 제작하고 V/F제어, 벡터제어, 센서리스 벡터제어 이론을 적용하여 인버터 출력전압 레벨이 여러 단계이며 dv/dt가 적으며 입력단 THD를 크게 낮출 수 있다는 결론을 얻었다.

  • PDF