• Title/Summary/Keyword: PV battery charger

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Study on MPPT controller using limit cycle (리미트 사이클을 이용한 MPPT 제어기에 대한 연구)

  • Kang Taekyung;Koh Kanghoon;Kwon Soonkurl;Suh Kiyoung;Nakaoka Mutsuo;Lee Hyunwoo
    • 한국신재생에너지학회:학술대회논문집
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    • 2005.06a
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    • pp.160-163
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    • 2005
  • This paper proposes a simple MPPT control scheme of a Current-Control-Loop Error system Based that can be obtains a lot of advantage to compare with another digital control method, P&O and IncCond algorithm, that is applied mostly a PV system. An existent method is needed an expensive processor such as DSP that calculated to change the measure power of a using current and voltage sensor at the once. Therefore, it is applied a small home power generation system that required many expenses. But, a proposed method is easy to solve the cost reduction and power unbalance problems that it is used by control scheme to limit error of a current control of common sensor. This proposed algorithm had verified through a simulation and an experiment on battery charger using PIC that is the microprocessor of a low price.

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Combined Control Algorithm for a DC-DC Converter of PV & Battery for Mongolian Nomadic Life (유목민들을 위한 PV & Battery용 DC-DC 컨버터의 통합제어 알고리즘)

  • Tuvdensuren, Oyunjargal;Le, Tat-Thang;Park, Min-Won;Yu, In-Keun
    • Journal of Korea Society of Industrial Information Systems
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    • v.23 no.1
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    • pp.23-29
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    • 2018
  • A stand-alone Photovoltaic (PV) system is one of the most important energy system for Mongolian nomadic herders. Basically, a stand-alone PV system uses two DC-DC converters. This makes the system costly, size bigger and difficult to move from one place to another place for the nomadic herders. A combined control algorithm for charging the battery using Stage of Charge (SOC) and Maximum Power Point Tracking (MPPT) is proposed in this paper. The batteries are charged by the three stage method; bulk, absorption and float charge. In the bulk stage used the MPPT function in this study. The performance of the proposed control algorithm is evaluated in both steady and changing weather conditions. The results are obtained using PSIM software. The results obtained in this paper are useful in designing a stand-alone PV system in the rural life like Mongolian nomadic herders.

A Sensorless MPPT Control Using an Adaptive Neuro-Fuzzy Logic for PV Battery Chargers (태양광 배터리 충전기를 위한 적응형 신경회로망-퍼지로직 기반의 센서리스 MPPT 제어)

  • Kim, Jung-Hyun;Kim, Gwang-Seob;Lee, Kyo-Beum
    • The Transactions of the Korean Institute of Power Electronics
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    • v.18 no.4
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    • pp.349-358
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    • 2013
  • In this paper, the sensorless MPPT algorithm is proposed where the performance of varied duty ratio change has been improved using multi-layer neuro-fuzzy that aligns with neuro-fuzzy based optimized membership function. Since the change of duty ratio of sensorless MPPT is varied by using the neuro-fuzzy, the MPPT response speed is faster than the convectional method and is able to reduce the steady-state ripple. The neuro fuzzy controller has the response characteristics which is superior to the existing fuzzy controller, because of the usage of the optimal width of the fuzzy membership function. The effectiveness of the proposed method has been verified by simulations and experimental results.

An Economic Evaluation under Thailand Feed in Tariff of Residential Roof Top Photovoltaic Grid Connected System with Energy Storage for Voltage Stability Improving

  • Treephak, Kasem;Saelao, Jerawan;Patcharaprakiti, Nopporn
    • International Journal of Advanced Culture Technology
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    • v.3 no.1
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    • pp.120-128
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    • 2015
  • In this paper, Residential roof top photovoltaic system with 9.9 kW design is proposed. The system composed of 200 Watts solar array 33 panels connecting in series 10 strings and parallels 3 strings which have maximum voltage and current are 350 V and 23.8 A. The 10 kW sinusoidal grid-connected inverter with window voltage about 270-350 is selected to convert and transfer DC Power to AC Power at PCC (Point of Common Coupling) of power system following to utility standard. However the impact of fluctuation and uncertainty of weather condition of PV may decrease the voltage stability and voltage collapse of power system. In order to solve this problem the energy storage such 120 V 1200 Ah battery bank and 30 kVAR capacitor are designed for voltage stability control. The other expensed for installing the system such battery charger, cable, accessories and maintenance cost are concerned. The economic analysis by using investment from money loan with interest about 7% and use own money which loss income of deposit about 3% are calculated as 671,844 and 547,044 for PV system with energy storage and non energy storage respectively. The solar energy from PV is about 101,616 Bath per year which evaluated by using the value of $5kWh/m^2/day$ from average peak sun hour (PSH) of the Thailand and 6.96 Bath/kWh of Feed in Tariff Incentive. The payback periods of four scenarios are proposed follow as i) PV system with energy storage and use loan money is 15 years ii) PV system with no energy storage and use loan money is 10 years iii) PV system with energy storage and use deposit money is 9 years iv) PV system with energy storage and use deposit money is 7 years. In addition, the other scenarios of economic analysis such no FIT support and other type of economic analysis such NPV and IRR are proposed in this paper.

A Study on LCMPPT controller for PV system (태양광 발전시스템을 위한 LCMPPT제어기에 관한 연구)

  • Kang, Tae-Kyung;Kho, Kang-Hoon;Choi, Seok-Won;Han, Ho-Dong;Lee, Hyun-Woo
    • 한국신재생에너지학회:학술대회논문집
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    • 2005.11a
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    • pp.680-683
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    • 2005
  • This paper proposes a simple MPPT control scheme of a Current-Control-Loop Error system Based that can be obtains a lot of advantage to compare with another digital control method, P&O and IncCond algorithm that is applied mostly a PV system. An existent method is needed an expensive processor such as DSP that calculated to change the measure power of a using current and voltage sensor at the once. Therefore, it is applied a small home power generation system that required many expenses. But, a proposed method is easy to solve the cost reduction and power unbalance problems that it is used by control scheme to limit error of a current control of common sensor. This proposed algorithm had verified through a simulation and an experiment on battery charger using PIC that is the microprocessor of a low price.

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Development of PV Module Integrated Type Low Voltage Battery Charger (MPPT 제어를 적용한 태양광 모듈 집적형 저전압 배터리 충전 장치 개발)

  • Kim, Dong-Hee;Shin, Seung-Min;Lee, Byoung-Kuk
    • Proceedings of the KIPE Conference
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    • 2012.07a
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    • pp.168-169
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    • 2012
  • 본 논문에서는 Cascade Buck-Boost 컨버터를 사용한 모듈 직접형 컨버터 (Module Integrated Converter, MIC)를 이용하여 독립형으로 저전압 배터리를 충전할 수 있는 알고리즘을 제안하고 이를 검증한다. 제안한 알고리즘은 입력 조건의 변화를 고려하여 MPPT 충전 동작 및 Constant Current (CC) - Constant Voltage (CV) 제어를 수행할 수 있어 배터리를 항상 최대의 전력으로 충전할 수 있게 한다. 제안한 충전 장치는 150W급 PV Module을 사용하여, 98.4%의 고효율 획득 및 알고리즘 성능을 검증한다.

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A Study on MPPT Control using the Maximum Power Balance/Unbalance Boundary Point Control (최대 전력 평형/불평형 경계점 제어를 이용한 MPPT제어에 관한 연구)

  • Koh Kang-Hoon;Kang Tae-Kyeng;Lee Hyun-Woo;Woo Jung-In
    • The Transactions of the Korean Institute of Electrical Engineers B
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    • v.55 no.1
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    • pp.33-38
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    • 2006
  • This paper proposes a simple MPPT control scheme of a based Current-Control-Loop system that can be obtains a lot of advantage to compare with another digital control method, P&O(Perturbation and Observation) and IncCond(Incremental Conductance) algorithm, that is applied mostly a PV system. An existent method is needed an expensive processor such as DSP that calculated to change the measure power of a using current and voltage sensor at the once. Therefore, it is applied a small home power generation system that required many expenses. But, a proposed method is easy to solve the cost reduction and power unbalance Problems that it is used by control scheme to limit error of a current control of common sensor. This proposed algorithm had verified through a simulation and an experiment results on battery charger using PIC that is the microprocessor of a low price.

PV MPPT with Battery Charger & Inductive Load Using Single Current Sensor (단일전류센서를 이용한 태양광 최대전력추종 및 배터리 충전과 모터 제어기법)

  • Kim, Seung-Min;Choy, Ick;Choi, Ju-Yeop;Lee, Sang-Cheol;Lee, Dong-Ha
    • Proceedings of the KIPE Conference
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    • 2013.07a
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    • pp.417-418
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    • 2013
  • 태양광 발전설비에서 태양광 셀의 출력전력을 최대로 부하에 전달하기 위해 태양광 최대전력추종제어를 한다. 일반적인 태양광 최대전력 추종제어는 태양광 셀의 전압과 전류의 곱인 전력값을 비교하여 최대전력추종제어를 한다. 본 논문에서는 MPPT 컨버터의 출력 파라미터 중 전류만을 센싱하여 태양광 최대전력추종제어를 한다. 또한 태양광 최대 전력추종제어를 통해 최대 출력으로 배터리를 충전하고 허용전류를 초과했을 때에는 전류제어로 충전하도록 설계한다. 이를 통해 Solar Car등과 같은 모터 부하에 적용해 보고자 한다.

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A study on MPPT control using the balace/unbalance control (평형/불평형 제어를 이용한 MPPT제어에 과한 연구)

  • K., T.K.;K., G.H.;C., K.J.;P., J.W.;Matsui, M.;L., H.W.
    • Proceedings of the KIEE Conference
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    • 2005.10c
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    • pp.334-336
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    • 2005
  • This paper proposes a simple MPPT control scheme of a Current- Control-Loop Error system Based that can be obtains a lot of advantage to compare with another digital control method, P&O and IncCond algorithm, that is applied mostly a PV system. An existent method is needed an expensive processor such as DSP that calculated to change the measure power of a using current and voltage sensor at the once. But, a proposed method is easy to solve the cost reduction and power unbalance problems that it is used by control scheme to limit error of a current control of common sensor. This proposed algorithm had verified through a simulation and an experiment on battery charger using PIC that is the microprocessor of a low price.

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The Study on the Controller for Supplying Stably Power with a Stand-Alone Photovoltaic/Wind/Small Generator Hybrid Power Generation System (독립형 태양광, 풍력, 소형발전기 복합시스템에서 안정적인 전력공급을 위한 컨트롤러에 관한 연구)

  • Choi, Byoung-Soo;Kim, Jae-Chul
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.26 no.4
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    • pp.48-56
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    • 2012
  • The object of this paper is the controller for supplying stably power in a separate house in which a hybrid electrical storage system with a stand-alone photovoltaic/wind power generation system and a small generator is applied. In the photovoltaic/wind hybrid power system used in the separate house, when only the battery is used in sunless days, the capacity of the battery is become larger. In particular, as in recent days, if cloudy days are frequent due to anomaly climate, it is difficult to estimate the number of sunless days. Accordingly, it is preferable to build the electrical storage system that numbers of sunshineless days are to be controlled and a shortage amount of the power generation capacity is to be handled by a small generator system. In order to supply stably power of new renewable energy such as solar to any separate houses, it is preferable to reduce the capacity of battery by decreasing the number of sunless days when estimating the capacity of battery and to drive the small generator for compensation of the power shortage. Such system needs components including inverters for photovoltaic and wind power generation system, batteries and controllers for automatically driving the small generator, based upon the nature of the stand-alone house, and it is preferable to use the controller having a simpler and higher stability by adopting the all-in-one scheme to facilitate its maintenance.