• Title/Summary/Keyword: Photovoltaic DC-DC Power Converter

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Comparative study of proportional-integral, proportional-resonant, and predictive deadbeat controllers in a PV PCS (태양광 전력변환장치의 PI, PR 및 PD 제어기 비교 연구)

  • Le, Dinh-Vuong;Kim, Chang-Soon;Hwang, Chul-Sang;Park, Minwon;Yu, In-Keun
    • Proceedings of the KIEE Conference
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    • 2015.07a
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    • pp.1050-1051
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    • 2015
  • In industry, there are several different controllers which can be implemented for power conditioning systems (PCS) such as proportional-resonant (PR), predictive deadbeat (PD), or proportional-integral (PI) controller. But there are not any comparison studies about these controllers. To investigate the differences between the three types of the controllers, this paper presents a comparative study of PR, PI, and PD controllers in a photovoltaic (PV) PCS. These controllers are designed mathematically and simulated for the comparative analysis. The PI controller is designed in the rotating reference (dq) frame. The PR and PD controllers are implemented in the natural (abc) reference frame. The PCS is composed of a DC-DC boost converter and a full bridge inverter. The filter of the PCS is an LCL filter including a passive damping resistor. The parameters of PCS are 3 kW, 25 kHz switching frequency and 220 V-60 Hz grid voltage. The comparison results between these controllers for the grid-connected PCS are clearly shown. The simulation results demonstrate the detailed characteristics of each controller for the PV PCS in order to choose the controller for individual target properly.

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A Study on the Utility Interactive Photovoltaic System Using a Chopper and PWM Voltage Source Inverter for Air Conditioner a Clinic room (병실 냉.난방을 위한 초퍼와 PWM 전압형 인버터를 이용한 계통 연계형 태양광 발전시스템에 관한 연구)

  • Hwang, L.H.;Na, S.K.
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.9 no.2
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    • pp.360-369
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    • 2008
  • The solar cells should be operated at the maximum power point because its output characteristics were greatly fluctuated on the variation of insolation, temperature and load. It is necessary to install an inverter among electric power converts by means of the output power of solar cell is DC. The inverter is operated supply a sinusoidal current and voltage to the load and the interactive utility line. In this paper, the proposes a photovoltaic system is designed with a step up chopper and single phase PWM voltage source inverter. Synchronous signal and control signal was processed by one-chip microprocessor for stable modulation. The step up chopper is operated in continuous mode by adjusting the duty ratio so that the photovoltaic system tracks the maximum power point of solar cell without any influence on the variation of insolation and temperature for solar cell has typical dropping character. The single phase PWM voltage source inverter is consists of complex type of electric power converter to compensate for the defect, that is, solar cell cannot be develop continuously by connecting with the source of electric power for ordinary using. It can be cause the efect of saving electric power, from 10 to 20%. The single phase PWM voltage source inverter operates in situation, that its output voltage is in same phase with the utility voltage. The inverter are supplies an ac power with high factor and low level of harmonics to the load and the utility power system.

Characteristic Analysis of HTS Magnet Charging System Combined with PV System Using MPPT Control (MPPT제어를 적용한 태양광발전 연계형 고온초전도마그넷 충전장치 특성 해석)

  • Kim, Dae-Wook;Yoon, Yong-Soo;Chung, Yoon-Do;Jo, Hyun-Chul;Kim, Ho-Min;Kim, Tae-Jung;Oh, Jae-Gi;Ko, Tae-Kuk
    • Progress in Superconductivity and Cryogenics
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    • v.14 no.1
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    • pp.8-13
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    • 2012
  • We already fabricated a proto-type HTS charging system with photovoltaic (PV) system and obtained design parameters for DC converter and HTS charging system. In order to develop the real scale charging system efficiently, we suggested a maximum power point tracking (MPPT) controller using a perturb and observe (P&O) MPPT algorithm for PV system. In this paper, we designed and simulated the MPPT controller for the real scale HTS charging system. As well as, the PV module has been analyzed by solving solar cell equivalent equations. The simulated and theoretical results presented here are being considered the next study which addresses the design and fabrication parameters.

Photovoltaic DC Module Integrated Converter Control using Inductor Current (인덕터 전류를 이용한 태양광 직류 모듈 집적형 전력변환장치 제어)

  • Lee, Hee-Seo;Kim, Dong-Hee;Lee, Eun-Ju;Lee, Byoung-Kuk
    • Proceedings of the KIPE Conference
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    • 2012.07a
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    • pp.25-26
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    • 2012
  • 본 논문에서는 태양광 발전 시스템의 직류 모듈 집적형 전력변환장치를 인덕터 전류 및 입 출력 전압을 이용하여 MPPT 및 출력 전류 제한을 수행하는 제어 방법을 제안한다. 이를 통해 기존의 입 출력 전류 및 입력 전압을 이용하는 방식에 비해 전류 센서를 한 개 줄이면서 동일한 특성으로 제어가 가능하다. 또한 실험을 통해 제안하는 방식의 타당성을 검증한다.

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Research into The Future Development of the Hybrid System for Buoy

  • Lee, Ji-Young;Kim, Jong-Do;Lee, Jong-Ho;Lee, Jin-Yeol;Oh, Jin-Seok
    • Journal of Advanced Marine Engineering and Technology
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    • v.31 no.5
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    • pp.583-591
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    • 2007
  • This paper reports the performance of a 150W PV-wave hybrid system with battery storage in buoy. This system was originally designed to meet a new hybrid ower system for buoy in Korea. In the case or lighted buoys and lighthouses, a light failure alarm system of wireless radio is attached so that light failures are immediately notified to the office. At lighthouse offshore fixed lights and light buoys where commercial electricity is not available, the power source depends on solar system and batteries. This power system has a various problems. Therefore energy derived from the sunshine, wind and waves has been used as the energy source lot aids to navigation. Recently a hybrid system of combining the solar, wind and the wave generator is a favorable system lot the ocean facilities like lighthouse and buoy. The hybrid system in this paper is intended for variable DC load like light, communication system in the buoy and includes a PV-wane generation system and battery. This is composed a high efficiency charging algorithm, switching converter and controller. This paper includes discussion on system reliability, power quality, and effects of hybrid system in the buoy. Simulation and experimental results show excellent performance.

A Single-Source Photovoltaic Power Conditioning System using Forward-Flyback converter and Asymmetric cascaded Multi Level H-bridge Inverter (포워드-플라이백 컨버터와 단일 전원 비대칭 다단식 H-bridge 다중 레벨 인버터를 적용한 태양광 전력 조절 시스템)

  • Jeon, Young-tae;Sundar, Mohana;Park, Joung-Hu
    • Proceedings of the KIPE Conference
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    • 2016.11a
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    • pp.73-74
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    • 2016
  • 본 논문은 포워드-플라이백 컨버터와 태양광 단일 전원 비대칭 다단식 H-bridge 다중 레벨 인버터를 적용한 태양광 전력 조절 시스템에 관한 논문이다. 이는 기존에 연구되었던 대칭형 다단식 H-Brdige 다중 레벨 인버터나 플라이백 컨버터를 사용한 태양광 전력 조절 시스템의 단점을 보완 한 것이다. 대칭형 다단식 멀티 레벨 인버터는 각 H-Bridge 구조 마다 독립된 전원이 필요하지만, 포워드-플라이백(Foward-Flyback) 컨버터를 접목시켜 단일 태양광 전원으로 하나의 다단식 H-Brdige 인버터를 구성 할 수 있고, 또한 기존의 플라이백 컨버터를 포워드-플라이백 컨버터로 대체 하면서 기존 대비 대용량 설비가 용이하고 효율적인 태양광 전력 조절 시스템을 설계 할 수 있다. 제안한 시스템의 가능성을 확인하기 위하여, PSIM 시뮬레이션을 통해 계통 연계형 1kW급 태양광 시스템의 최대 전력 추종 제어(Maximum Power Point Tracking)와 인버터의 $V_{dc}$ 전압 제어를 확인하였다.

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Characteristic PCS of Inverter by Boost Converter of PV Generation (태양광 발전 부스트 컨버터를 이용한 인버터 PCS 특성)

  • Hwang, Lark-Hoon;Na, Seung-kwon;Oh, Sang-hak
    • Journal of Advanced Navigation Technology
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    • v.22 no.6
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    • pp.654-664
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    • 2018
  • In this paper, this system is operated by PCS that is driven by being synchronized voltage fed inverter and AC source, and in the steady state of power source charge battery connected to DC side with solar cell using a photovoltaic (PV) that it was so called constant voltage charge. it can cause the effect of energy saving of electric power, from 10 to 20%. and through a normal operation of electric energy storage system (EESS). In addition, better output waveform was generated because of pulse width modulation (PWM) method, and it was Proved to test by experiment maintained constant output voltage regardless of AC source disconnection, load variation, and voltage variation of AC power source.

A Study on Power Conversion System for Photovoltaic Generation (태양광 발전용 전력변환장치에 관한 연구)

  • 박정환;장수형;이성근;안병원;김윤식
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2001.05a
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    • pp.437-442
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    • 2001
  • Recently, transformerless inverters have been studied to reduce sizes and costs of utility-connected PV systems. This paper presents a transformerless PV inverter using a two-phase boost converter of reduced ripples in input current and output voltage, low voltage stress of semiconductor device and reduced size of input reactor. And new PWM method is introduced, whose on-off time is calculated from simultaneous equation induced by fourier series. To verify a validity of the proposed transformerless inverter, computer simulation has been carried out.

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Evaluation of a betavoltaic energy converter supporting scalable modular structure

  • Kang, Taewook;Kim, Jinjoo;Park, Seongmo;Son, Kwangjae;Park, Kyunghwan;Lee, Jaejin;Kang, Sungweon;Choi, Byoung-Gun
    • ETRI Journal
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    • v.41 no.2
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    • pp.254-261
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    • 2019
  • Distinct from conventional energy-harvesting (EH) technologies, such as the use of photovoltaic, piezoelectric, and thermoelectric effects, betavoltaic energy conversion can consistently generate uniform electric power, independent of environmental variations, and provide a constant output of high DC voltage, even under conditions of ultra-low-power EH. It can also dramatically reduce the energy loss incurred in the processes of voltage boosting and regulation. This study realized betavoltaic cells comprised of p-i-n junctions based on silicon carbide, fabricated through a customized semiconductor recipe, and a Ni foil plated with a Ni-63 radioisotope. The betavoltaic energy converter (BEC) includes an array of 16 parallel-connected betavoltaic cells. Experimental results demonstrate that the series and parallel connections of two BECs result in an open-circuit voltage $V_{oc}$ of 3.06 V with a short-circuit current $I_{sc}$ of 48.5 nA, and a $V_{oc}$ of 1.50 V with an $I_{sc}$ of 92.6 nA, respectively. The capacitor charging efficiency in terms of the current generated from the two series-connected BECs was measured to be approximately 90.7%.