• Title/Summary/Keyword: P-Grid

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Modeling, Control and Simulation of Microturbine Generator for Distributed Generation System in Smart Grid Application

  • Hong, Won-Pyo;Cho, Jae-Hoon
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.23 no.7
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    • pp.57-66
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    • 2009
  • Microturbines system (MTS) are currently being deployed as small scale on-site distributed generators for microgrids and smart grids. In order to fully exploit DG potentialities, advanced integrated controls that include power electronics facilities, communication technologies and advanced modeling are required. Significant expectations are posed on gas microturbines that can be easily installed in large commercial and public buildings. Modeling, control, simulation of microturbine generator based distributed generation system in smart grid application of buildings for both grid-connected and islanding conditions are presented. It also incorporates modeling and simulation of MT with a speed control system of the MT-permanent magnet synchronous generator to keep the speed constant with load variation. Model and simulations are performed using MATLAB, Simulink and SimPowerSystem software package. The model is built from the dynamics of each part with their interconnections. This simplified model is a useful tool for studying the various operational aspects of MT and is also applicable with building cooling, heating and power (BCHP) systems

A Control Method and Test Results of Utility-Interactive Photovoltaic Power Generation Systems (계통연계 태양광발전시스템의 제어기법 및 연계운전특성)

  • 황인호;안교상;임희천;김신섭
    • The Transactions of the Korean Institute of Power Electronics
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    • v.5 no.2
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    • pp.123-129
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    • 2000
  • This paper desclibes a design method and test results of grid-connected photovoltaic power 당eneration s systems, which consists of solar cells, DCI AC inverter, utility grid. A 50 kW photovoltaic power generation s system including a 3-phase DCI AC inverter is designed and made in order to investigate the system l pelionnance for glid connection. Also the control scheme of a three phase cmrent-controlled PWM inverter W with PI controller is presented by using d-q transformation. The experimental waveforms show that the p proposed system has stable behavior with em unit power factor in utility-interactive operation.

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Cascaded H-Bridge Five Level Inverter for Grid Connected PV System using PID Controller

  • Sivagamasundari, M.S.;Mary, P. Melba
    • JSTS:Journal of Semiconductor Technology and Science
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    • v.16 no.4
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    • pp.451-462
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    • 2016
  • Photovoltaic energy conversion becomes main focus of many researches due to its promising potential as source for future electricity and has many advantages than the other alternative energy sources like wind, solar, ocean, biomass, geothermal etc. In Photovoltaic power generation multilevel inverters play a vital role in power conversion. The three different topologies, diode-clamped (neutral-point clamped) inverter, capacitor-clamped (flying capacitor) inverter and cascaded h-bridge multilevel inverter are widely used in these multilevel inverters. Among the three topologies, cascaded h-bridge multilevel inverter is more suitable for photovoltaic applications since each pv array can act as a separate dc source for each h-bridge module. This paper presents a single phase Cascaded H-bridge five level inverter for grid-connected photovoltaic application using sinusoidal pulse width modulation technique. This inverter output voltage waveform reduces the harmonics in the generated current and the filtering effort at the input. The control strategy allows the independent control of each dc-link voltages and tracks the maximum power point of PV strings. This topology can inject to the grid sinusoidal input currents with unity power factor and achieves low harmonic distortion. A PID control algorithm is implemented in Arm Processor LPC2148. The validity of the proposed inverter is verified through simulation and is implemented in a single phase 100W prototype. The results of hardware are compared with simulation results. The proposed system offers improved performance over conventional three level inverter in terms of THD.

Hybrid Control and Protection Scheme for Inverter Dominated Microgrids

  • Xu, Xiaotong;Wen, Huiqing;Jiang, Lin;Hu, Yihua
    • Journal of Power Electronics
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    • v.17 no.3
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    • pp.744-755
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    • 2017
  • With the high penetration of various sustainable energy sources, the control and protection of Microgrids has become a challenging problem considering the inherent current limitation feature of inverter-based Distributed Generators (DGs) and the bidirectional power flow in Microgrids. In this paper, a hybrid control and protection scheme is proposed, which combines the traditional inverse-time overcurrent protection with the biased differential protection for different feeders with different kinds of loads. It naturally accommodates various control strategies such as P-Q control and V-f control. The parameter settings of the protection scheme are analyzed and calculated through a fast Fourier transform algorithm, and the stability of the control strategy is discussed by building a small signal model in MATLAB. Different operation modes such as the grid-connected mode, the islanding mode, and the transitions between these two modes are ensured. A Microgrid model is established in PSCAD and the analysis results show that a Microgrid system can be effectively protected against different faults such as the single phase to ground and the three phase faults in both the grid-connected and islanded operation modes.

A Novel Input and Output Harmonic Elimination Technique for the Single-Phase PV Inverter Systems with Maximum Power Point Tracking (최대출력추종 제어를 포함한 단상 태양광 인버터를 위한 새로운 입출력 고조파 제거법)

  • Amin, Saghir;Ashraf, Muhammad Noman;Choi, Woojin
    • Proceedings of the KIPE Conference
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    • 2019.07a
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    • pp.207-209
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    • 2019
  • This paper proposes a grid-tied photovoltaic (PV) system, consisting of Voltage-fed dual-active-bridge (DAB) dc-dc converter with single phase inverter. The proposed converter allows a small dc-link capacitor, so that system reliability can be improved by replacing electrolytic capacitors with film capacitors. The double line frequency free maximum power point tracking (MPPT) is also realized in the proposed converter by using Ripple Correlation method. First of all, to eliminate the double line frequency ripple which influence the reduction of DC source capacitance, control is developed. Then, a designing of Current control in DQ frame is analyzed and to fulfill the international harmonics standards such as IEEE 519 and P1547, $3^{rd}$ harmonic in the grid is directly compensated by the feedforward terms generated by the PR controller with the grid current in stationary frame to achieve desire Total Harmonic Distortion (THD). 5-kW PV converter and inverter module with a small dc-link film capacitor was built in the laboratory with the proposed control and MPPT algorithm. Experimental results are given to validate the converter performance.

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Design and Implementation of P2P based Grid Information System (P2P 기반 그리드 정보 서비스 모델의 설계 및 구현)

  • 강윤희;강경우;김도현;조광문;궁상환
    • Proceedings of the KAIS Fall Conference
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    • 2003.06a
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    • pp.161-164
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    • 2003
  • 현재의 MDS 시스템은 제한적인 캐슁에 따른 불필요한 그리드 정보서비스 서버 접근, 다양한 응용 사용자를 위한 최적의 자원 정보 발견의 어려움 및 DIT 내의 노드 결합 또는 네트워크 단절에 따른 서비스 중단의 문제점 등을 갖는다. 본 연구에서는 기존의 그리드 컴퓨팅을 위한 미들웨어인 Globus의 정보 서비스 시스템인 MDS의 확장을 기술한다. 제안된 확장 시스템은 자원 접근 및 발견을 위해 P2P 기반의 결함 포용을 갖는 강건하고 적응형 정보 서비스를 제공하기 위한 모텔 설계를 수행한다. 특히, 그리드 정보서비스는 단일 기점 결함(Single-point failure) 및 중복으로 등록된 자원에 대한 추가적인 트래픽을 발생시킨다. 본 연구에서는 기존의 MDS에 강건성을 갖고 네트워크 트랙픽 감소를 위해 P2P를 기반으로 확장된 그리드 정보서비스 아키텍츄어 설계를 제안하며 이를 위한 결함 검출 시스템을 Apples를 기반으로 구성하였다.

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A Methodological Approach on the Evaluation of Patient Satisfaction: Focused on the Importance Performance Analysis(IPA) (환자만족도 평가에 대한 방법론적 접근: IPA기법을 중심으로)

  • Park, Jae-San
    • Health Policy and Management
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    • v.18 no.3
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    • pp.1-17
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    • 2008
  • The measurement and management of patient satisfaction has become one of the key issues in the last two decades. Hospitals must thoroughly understand the needs of their customers and design products and health services that meet and exceed their expectations. The importance-performance analysis(IPA) is a widely used analytical technique that yields strategies for managing customer satisfaction in a variety of applications. IP A is a two-dimensional grid based on customer-perceived importance of quality attributes and attribute performance. Depending on the interplay of these two dimensions, four strategies can be derived. The aim of this study is to develop the management strategies for improving patient satisfaction in university hospitals using the I-P analysis. The attributes on inpatient service quality in 4 university hospitals was investigated using the Martilla and James(l977)' s a mean adjusted I-P grid where the axes of the grid cross at the average rating point of all items. The patient satisfaction questionnaires were completed by 600 hospital inpatients. The main statistical methods are path analysis and IPA with SPSS 12.0 and AMOS 4.0 statistical softwares. The two attributes, physician and medical service, administrative staff kindness attributes position in first quadrant(Keep Up the Good domain). The nurse and nursing service attributes position in second quadrant(Possible Overkill domain). The two attributes, convenience of check-in service, facilities and physical environment position in third quadrant(Low Priority domain). Finally the quality of inpatient service(food etc.) attributes position in fourth quadrant(Concentrate Here domain). These findings show various implications on the development of strategies in university hospitals in the future. It was determined that quality of inpatient service(food etc.) need to concentrate more on investments. These investments include a taste, price, proper provision of food service and quick response of pain management. A low priority was given to investment in streamlining the check-in process of inpatient and hospital facilities and physical environment in the long run.

Efficient 3D Acoustic Wave Propagation Modeling using a Cell-based Finite Difference Method (셀 기반 유한 차분법을 이용한 효율적인 3차원 음향파 파동 전파 모델링)

  • Park, Byeonggyeong;Ha, Wansoo
    • Geophysics and Geophysical Exploration
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    • v.22 no.2
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    • pp.56-61
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    • 2019
  • In this paper, we studied efficient modeling strategies when we simulate the 3D time-domain acoustic wave propagation using a cell-based finite difference method which can handle the variations of both P-wave velocity and density. The standard finite difference method assigns physical properties such as velocities of elastic waves and density to grid points; on the other hand, the cell-based finite difference method assigns physical properties to cells between grid points. The cell-based finite difference method uses average physical properties of adjacent cells to calculate the finite difference equation centered at a grid point. This feature increases the computational cost of the cell-based finite difference method compared to the standard finite different method. In this study, we used additional memory to mitigate the computational overburden and thus reduced the calculation time by more than 30 %. Furthermore, we were able to enhance the performance of the modeling on several media with limited density variations by using the cell-based and standard finite difference methods together.