• Title/Summary/Keyword: PV power generation system

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Development of Photovoltaic Modeling and Generation System using PLECS in MATLAB (MATLAB 기반의 PLECS를 이용한 태양광 모델링 및 발전시스템 개발)

  • Choe, Gyu-Yeong;Kim, Jong-Soo;Lee, Young-Kuk;Lee, Byoung-Kuk
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.58 no.12
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    • pp.2379-2384
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    • 2009
  • In this paper, based on MATLAB which has characteristic that is simply applied to control algorithm and source modeling, photovoltaic modeling is implemented. Photovoltaic modeling is similarly performed PV array and simulated. Also, in order to output maximum power of PV, MPPT control is simulated. Moreover, simulation of converter is performed by means of PLECS (Piece wise Linear Electrical Simulation) which is easily made schematic of power electronics. Also, we compare simulation results and Sharp PV module and Suntech PV module. Finally, informative simulation of PV generation system is provided.

A Study on the Design of Power System for Buoy (등부표 전력 시스템 설계에 관한 연구)

  • Jo, Kwan-Jun;Oh, Jin-Seok
    • Journal of Navigation and Port Research
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    • v.35 no.8
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    • pp.631-636
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    • 2011
  • Stable power supply to a light mounted on a navigational buoy is indispensable factor because unstable power can lead to fatal marine accident. Despite the difference lies between onshore and offshore environment, as well as the power output characteristics, the PV(Photovoltaic) power generation system is designed by the independent onshore power generation system standards. Furthermore, the capacity of PV power generation system does not take into account the structural characteristics of the buoy in the sea. Therefore, the faulty design makes battery over-discharge owing to lack of the power generation and the battery can not supply stable power to the light. This paper introduces a design method for a power system of the PV powered buoy. The data has been acquired for 3 months period, which includes PV-generated electricity, power consumption and battery voltage from experimental buoy. Further, a power management features of the buoy has been analyzed based on the acquired data. From the analysis of the acquired data, it was evident that PV power generation system produces different electric power output depend on its installed environment - land and sea. Based on the analytical result, a design criterion has been proposed for the power system in the navigational buoy.

Control Strategies of Mobility Charging Systems Using PV-ESS Systems (태양광 발전과 에너지저장시스템을 활용한 모빌리티 충전 시스템의 제어 방법)

  • Kim, Dae-Won;Lee, Hyeon-Min;Park, Sung-Min
    • The Transactions of the Korean Institute of Power Electronics
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    • v.26 no.5
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    • pp.334-341
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    • 2021
  • Operation modes and control strategies for single-phase mobility charging station utilizing photovoltaic (PV) generation and energy storage systems (ESS) are proposed. This approach generates electric power from PV to transmit the mobility, ESS, and then transfer it to the grid when surplus electric power is generated during daytime. However, the PV power cannot be generated during night-time, and ESS and the mobility system can be charged using grid power. The power balance control based on power fluctuations and the resonant current control that can compensate harmonic components have been added to increase the stability of the system. The MATLAB/Simulink simulation was carried out to verify the proposed control method, and the 2-kW single-phase grid-tied PV-ESS smart mobility charger was built and tested.

Prediction of Photovoltaic Power Generation Based on Machine Learning Considering the Influence of Particulate Matter (미세먼지의 영향을 고려한 머신러닝 기반 태양광 발전량 예측)

  • Sung, Sangkyung;Cho, Youngsang
    • Environmental and Resource Economics Review
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    • v.28 no.4
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    • pp.467-495
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    • 2019
  • Uncertainty of renewable energy such as photovoltaic(PV) power is detrimental to the flexibility of the power system. Therefore, precise prediction of PV power generation is important to make the power system stable. The purpose of this study is to forecast PV power generation using meteorological data including particulate matter(PM). In this study, PV power generation is predicted by support vector machine using RBF kernel function based on machine learning. Comparing the forecasting performances by including or excluding PM variable in predictor variables, we find that the forecasting model considering PM is better. Forecasting models considering PM variable show error reduction of 1.43%, 3.60%, and 3.88% in forecasting power generation between 6am~8pm, between 12pm~2pm, and at 1pm, respectively. Especially, the accuracy of the forecasting model including PM variable is increased in daytime when PV power generation is high.

A Study on the Tracking Failure of MPPT Control in PV Generation System (태양광 발전시스템의 MPPT제어의 최대전력추종 실패에 관한 연구)

  • Kim, Bong-Tae;Lee, Jae-Deuk;Park, Min-Won;Yu, In-Keun
    • Proceedings of the KIEE Conference
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    • 2001.07b
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    • pp.1290-1292
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    • 2001
  • Photovoltaic(PV) power generation system has been extensively studied and watched with keen interest as a clean and renewable power source. On the other hand, because the output power of solar cell is not only unstable but uncontrollable, the maximum power point tracking(MPPT) control is still hot issue with the tracking failure left unsolved under the sudden fluctuation of irradiance. Hence, in this paper, we introduce the mechanism of the tracking failure under the fluctuation of irradiance, and show the simulation results using SPRW(simulation method for PV power generation system using real weather conditions).

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The Operating Characteristics of 3kW Utility Interconnected Photovoltaic System (3kW 계통연계형 태양광발전시스템의 운전특성)

  • Kim, Hyung-Seok;Park, Jeong-Min;Na, Jong-Deok;Baek, Hyung-Rae;Cho, Geum-Bae
    • Proceedings of the KIEE Conference
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    • 2004.04a
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    • pp.201-204
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    • 2004
  • Consider the optimal design for PV system, it is apply to 3kW interconnected electric power PV system, that is a point of reference for 3kW PV the spread residential section system. Through the driving various practical system, we look into that for efficiency of generation and stability of interconnected system. Using obtained data acquisition, It can be suggest that installation and management for system parameter to optimal design maximum generation electric power. PV system have some losses that are variation radiation, shadow, change temperature, unbalanced grid connection, serial circuit loss, MPP deference loss, PCS loss and so forth. Using obtained various performance characteristic result, we can make database in the future, through the this study, we can get the reliance and have regard to spread PV system.

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The Study on Optimize the Battery of Stand Alone PV/Wind Hybrid System for Supplying Stably Power (독립형 태양광 풍력 복합발전 시스템에서 안정적인 전력공급을 위한 축전지 용량의 최적 산정에 관한 연구)

  • Choi, Byoung-Soo;Kim, Jae-Chul
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.25 no.9
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    • pp.26-32
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    • 2011
  • The object of this paper is to optimize the battery system for supplying stably power in separate house in which a PV-wind hybrid power generation system is applied. In a power system to be used in a stand alone, it is very important to build optimize the electrical storage system and to utilize it for supplying stably output voltage when there is a shortage of the power generation capacity or there is no sunshine, or when power is to be supplied with a load. This paper provides an optimized method to evaluate capacity of battery by analyzing advantages and disadvantages of the existing battery evaluating method being used in each company for supplying stably power in separate house utilizing the new renewable energy such as a light of the sun.

A Novel Simulation model of Solar Cell using EMTDC (EMTDC를 이용한 태양전지의 새로운 시뮬레이션 모델)

  • Park, Min-Won;Kim, Bong-Tae;Lee, Jae-Deuk;Yu, In-Keun;Sung, Ki-Chul
    • Proceedings of the KIEE Conference
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    • 2000.11a
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    • pp.113-115
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    • 2000
  • So far, it was very difficult to simulate the dispersed generation system including PV generation system using EMTP or EMTDC because the source of the dispersed generation system has a particular VI characteristic equation. In this paper, a novel simulation method of PV generation system has proposed and a new solar cell component for EMTDC is also developed. The VI characteristic equation of solar cell is used in order to realize the solar generation system in EMTDC simulation. Consequently the simulation of PV power generation system using field data is realized and acceptable results, which show close match between the real data of PV panel and the simulated data, were obtained.

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A Novel Simulation Method of PV Generation System using Field Data (실제 데이터를 이용한 태양광 발전시스템의 시뮬레이션)

  • Park, Min-Won;Kim, Bong-Tae;Yu, In-Keun
    • Proceedings of the KIEE Conference
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    • 2000.11a
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    • pp.52-54
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    • 2000
  • In PV power generation system study, huge system apparatuses are needed in order to verify the effect of system efficiency and stability considering the size of solar panels, the sort of converter types, and the load conditions and so on. And also, under the same weather and load conditions it is impossible to compare a certain MPPT control scheme to others. In this paper, in order to obtain effective solutions for the above mentioned topics, the solar cell array is simulated with it's VI characteristic equations, and the real field data of weather conditions is interfaced to EMTDC using Fortran program interface method. Consequently the simulation of PV power generation system using field data is realized in this paper, and acceptable results, which show close match between the real data of PV panel and the simulated data, were obtained.

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A Study on Generation Capacity of Residence PV System (주택용 PV 시스템의 발전성능에 대한 연구)

  • Kim, Byeong-Man;Lee, Kil-Song;Shin, Hyun-Woo;Yang, Yeon-Won
    • Proceedings of the KIPE Conference
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    • 2008.10a
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    • pp.190-192
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    • 2008
  • The government plans to deploy 100,000 photovoltaic system in residential houses by 2012. In this paper, I described how to design the Residence PV System and how to simulated which predict the efficiency of its electrical generation. AS comparing the simulated data and actual installed 3kW photovoltaic power generation system. I analyze the condition of the Residence PV system and suggest the best way to design in best condition.

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