• Title/Summary/Keyword: PSIM S/W

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Commercial Tool Based Modeling and Simulation Analysis of a Grid-Connected for 120kW Photovoltaic Generation System (상용툴을 이용한 120kW급 계통연계형 태양광발전시스템의 모델링 및 모의 해석)

  • Hwang, J.H.;Ahn, K.S.;Kim, Y.S.;Lim, H.C.;Oh, J.M.
    • Proceedings of the KIEE Conference
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    • 2006.07a
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    • pp.519-520
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    • 2006
  • In this paper, to evaluate the grid-connected 120kW class Photovoltaic(PV) system performance, as a consisted of solar cells, PCS, 150kVA transformer station. The paper address modeling and analysis of a grid-connected 120kW class photovoltaic generation system(PV system) PSCAD/EMTD and Psim. A PWM voltage source inverter(VIS) and its current control scheme have been implemented. A P&O(Perturbation and Observation) MPPT algorithms technique modeling has been simulated and analysed.

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A Study on Control Algorithms of Efficiency Improvement Device for PV System Operation using Li-ion Battery (리튬이온전지를 이용한 태양광전원의 운용효율향상장치의 제어 알고리즘에 관한 연구)

  • Park, Ji-Hyun;Kim, Byung-Mok;Lee, Hu-Dong;Nam, Yang-Hyun;Rho, Dae-Seok
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.19 no.10
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    • pp.590-597
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    • 2018
  • Recently, the installation of PV systems has been increasing due to the worldwide interest in eco-friendly and renewable solar energy. On the other hand, the output power of PV systems is influenced strongly by the surrounding weather conditions. In addition, the entire operation efficiency of PV systems may be decreased considerably even if only some of the PV modules are in the shade. In other words, the existing control method at which strings with modules in series are connected to an inverter may be not operated in the case that the string voltage in partial shade is lower than the operating range of the grid connected inverter. To overcome these problems, this paper proposes an operation efficiency improvement device of a PV system using a Li-ion battery, which can compensate for the voltage of each string in the PV system when it is partially shaded. In addition, this paper presents the modeling of the operation efficiency improvement device, including PV strings, Li-ion battery and a 3-Phase grid inverter based on the PSIM S/W. From the simulation results, it was confirmed that the proposed control method can improve the operating efficiency of PV systems by compensating for the string voltage with partial shade.

A Study on Output Enhancement Method of PV Array Using Electrical Circuit Reconfiguration Algorithm (전기적 회로절체 알고리즘에 의한 태양광 어레이의 출력향상 방안에 관한 연구)

  • Kim, Byung-Mok;Lee, Hu-Dong;Tae, Dong-Hyun;Rho, Dae-Seok
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.21 no.8
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    • pp.9-17
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    • 2020
  • Recently, RES (renewable energy source) projects have been spreading all over the world as an alternative to solve the shortage of energy and environmental problems caused by fossil fuel consumption. The Korean government also supported the policy and demonstration project to increase the proportion of renewable energy to 63.8[GW] until 2030, which is 20[%] of the total power generation. On the other hand, output loss of a PV array can occur when the surrounding high-rise buildings and trees shade a PV array. Therefore, this paper proposes an algorithm to improve the output loss of a PV array, which electrically changes a circuit configuration of PV modules by wiring and switching devices. Furthermore, this study modeled a PV system based on PSIM S/W, which was composed of a PV array, a circuit configuration device, and a grid-connected inverter. From the simulations results with the modeling and test device, the existing method showed no output when 50% of the shade occurs in PV modules. In contrast, the proposed method could produce the output because the voltage in the PV module could be restored to 246[V], and the operation efficiency of the PV system could be improved by the operation algorithm of the circuit configuration device.

The bidirectional DC module type PCS design for the System Inter Connection PV-ESS of Secure to Expandability (계통 연계 PV-ESS 확장성 확보를 위한 병렬 DC-모듈형 PCS 설계)

  • Hwang, Lark-Hoon;Na, Seung-Kwon;Choi, Byung-Sang
    • The Journal of Korea Institute of Information, Electronics, and Communication Technology
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    • v.14 no.1
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    • pp.56-69
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    • 2021
  • In this paper, the PV system with a link to the commercial system needs some advantages like small capacity, high power factor, high reliability, low harmonic output, maximum power operation of solar cell, and low cost, etc. as well as the properties of inverter. To transfer the PV energy of photovoltaic power generation system to the system and load, it requires PCS in both directions. The purpose of this paper is to confirm the stable power supply through the load leveling by presenting the PCS considering ESS of photovoltaic power generation. In order to achieve these purpose, 5 step process of operation mode algorithm were used according to the solar insolation amount and load capacity and the controller for charging/ discharging control was designed. For bidirectional and effective energy transfer, the bidirectional converter and battery at DC-link stage were connected and the DC-link voltage and inverter output voltage through the interactive inverter were controlled. In order to prove the validity of the suggested system, the simulation using PSIM was performed and were reviewed for its validity and stability. The 3[kW] PCS was manufactured and its test was conducted in order to check this situation. In addition, the system characteristics suggested through the test results was verified and the PCS system presented in this study was excellent and stronger than that of before system.

Novel ZVS Switching Method of Full-bridge Converter (Full-bridge Converter의 새로운 ZVS 스위칭 기법)

  • Kim, Seung-Ryong;Sun, Han-Geol;Han, Man-Seung;Park, Sung-Jun
    • The Transactions of the Korean Institute of Power Electronics
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    • v.16 no.5
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    • pp.477-483
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    • 2011
  • Existing switching system that is one of the ways which are used for DC/DC power converter is classified to hard-switching system and resonant-soft-switching system, generally. Hard-switching system is inefficient because the power loss of the switching element is large when it is been to trun on or turn off. And resonant-soft-switching system have the defect that need to add the another reactor and capacitor that make it expensive and huge. This paper suggest the ZVS Full-Bridge power converter contrcution of novel switching system for the overcoming these shortcomings. In Suggested soft-switching system, the front of buck converter at diode current, switch is changing on and off at the part of full-bridge converter's zero voltage part. as the result that is possible to be ZVS excepting the reactor and capacitor. also to verify the reasonability of the isolated ZVS full-bridge DC/DC converter as previously suggested, we produced the 500[W] level DC/DC converter and enforced the simulation for Psim, and then it able to conform the superiority of the DC/DC converter's efficient.

A Study on high efficiency Bridgeless PFC Converter applied SiC SBD (SiC SBD 적용한 고효율 Bridgeless PFC 컨버터에 대한 연구)

  • Jeon, Joon-Hyeok;Kim, Hyung-Sik;Kim, Hee-Jun;Ahn, Joon-Seon
    • The Journal of Korea Institute of Information, Electronics, and Communication Technology
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    • v.12 no.4
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    • pp.449-455
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    • 2019
  • This paper proposes a flyback diode of bridgeless PFC converter as SiC SBD (Schottky Barrier Diode) to achieve high efficiency. In addition, through the explanation of the operation principle of the bridgeless PFC converter, the conduction section of the freewheel diode is shown in the bridgeless PFC converter to verify the contribution of system loss due to the loss of the freewheel diode. The advantages of the SiC SBD device's physical properties and the reverse recovery characteristics are explained, and the efficiency is measured by measuring the turn-on and turn-off losses. The loss was calculated. The simulation results were calculated in consideration of device characteristics and verified through the waveform analysis and comparison of the actual system. In order to consider the device characteristics, the simulation was conducted using the thermal module of PSIM. As a result of the prototype test, the turn-on loss was 0.608W and the turn-off loss was 21.62W, resulting in the total switching loss of 22.228W. The comparison of the two results proved the validity of the experimental method. In addition, a high efficiency of 94.58% is achieved.

The Study of PFC Converter added Active DC Filter Using for the Predict Current Control Method (예측 전류 제어기법을 사용한 능동 DC 필터 부가형 PFC 컨버터에 관한 연구)

  • Park S.W.;Heo T.W.;Shin D.R.;Bae J.I.;Ahn I.M.;Woo J.I.
    • Proceedings of the KIPE Conference
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    • 2001.07a
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    • pp.219-222
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    • 2001
  • In this paper, we firstly proposed to the boost type PFC circuit for a power factor improving and a harmonic decreasing. The predict current control method is used to control these PFC circuit. This current control method has a merit that is possible to improve power factor and harmonics. In addition, we suggested to the active DC filter, which is connected with the DC output terminal, in order to compensate the DC ripple components. Consequently, these results are proved by the simulation tool, PSIM, which is an exclusive simulator of power electronics.

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Constant Power Control of Variable Input Robust Resonant FB DC-DC Converter (순시 가변입력에 강인한 공진형 FB DC-DC Converter의 정출력 제어)

  • Hwang, Y.M.;Park, S.W.;Choi, S.F.;Shin, D.R.;Chung, K.S.
    • Proceedings of the KIEE Conference
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    • 2000.07b
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    • pp.1351-1353
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    • 2000
  • In this paper, it is proposed to constant power control of solar power system. The solar power system has disadvantage that low power density and variable power output. Proposed strategy is controled by DC/DC converter using phase shift PWM and I-PD type control applying type 1 digital system. The validity of proposed control strategy is verified from simulations results using PSIM.

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A study on the power factor improvement of Wind Turbine Generation System at Haeng-Won in Jeju (제주 행원 풍력 발전 시스템의 역률 개선에 관한 연구)

  • Park S.G.;Kim J.W.;Kang G.B.;Kim E.H.
    • Proceedings of the KIPE Conference
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    • 2003.07a
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    • pp.375-378
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    • 2003
  • This paper presents a study on the power factor improvement of the Wind turbine Generation System(WTGS) at Haeng-won wind farm in Jeju Island. Vestas WTGS named V47 as a model system is selected in this paper, and has 660 kW Power ratings. In this system, power factor correction is controlled by the conventional method with power condenor bank. So, model system at Haeng-won wind farm has very low power factor in the area of low wind speed, which is from 4 m/s to 6 m/s. This is caused by the power factor correction using power condenser bank To improve the power factor in the area of low wind speed, we used the static var compensator(SVC) using current controlled PWM power converter by IGBT switching device. finally, to verify the profosed method, the results of computer simulation using Psim program are presented to support the discussion.

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Development of LED Street Lighting Controller for Wind-Solar Hybrid Power System

  • Lee, Yong-Sik;Gim, Jae-Hyeon
    • Journal of Electrical Engineering and Technology
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    • v.9 no.5
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    • pp.1643-1653
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    • 2014
  • This paper presents the design and implementation of a wind-solar hybrid power system for LED street lighting and an isolated power system. The proposed system consists of photovoltaic modules, a wind generator, a storage system (battery), LED lighting, and the controller, which can manage the power and system operation. This controller has the functions of maximum power point tracking (MPPT) for the wind and solar power, effective charging/discharging for the storage system, LED dimming control for saving energy, and remote data logging for monitoring the performance and maintenance. The proposed system was analyzed in regard to the operation status of the hybrid input power and the battery voltage using a PSIM simulation. In addition, the characteristics of the proposed system's output were analyzed through experimental verification. A prototype was also developed which uses 300[W] of wind power, 200[W] of solar power, 60[W] LED lighting, and a 24[V]/80[Ah] battery. The control system principles and design scheme of the hardware and software are presented.