• Title/Summary/Keyword: Distributed Generations

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Reliability Evaluation of distributed generation included distribution system using analytical method (해석적 신뢰도지수 산출기법을 이용한 배전계통에서의 분산전원 영향 평가)

  • Bae In Su;Kim Jin O;Park Jong Jin;Jo Jong Man
    • Proceedings of the KIEE Conference
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    • summer
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    • pp.39-41
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    • 2004
  • This paper presents a analytical method for the reliability evaluation of distribution system, including the distributed generations. Unlike the generators of transmission system, those of distribution system have complexities in analyzing and determining the operation. In the process of evaluate reliability, it could be shown that the analytical method is simpler than the monte-carlo simulation. Modeling technique of distributed generation to analysis distribution system reliability using frequency and duration method is proposed in this paper, and is compared with the simulation method as a result of the distribution system reliability evaluation.

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Development of a Coordinated Voltage Regulation Scheme in Distribution Networks with Multiple Distributed Generations (협조 제어를 이용한 분산전원 연계 배전계통의 전압조정 방식 개발)

  • Oh, Yun-Sik;Cho, Kyu-Jung;Kim, Min-Sung;Kim, Ji-Soo;Kim, Chul-Hwan
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.66 no.9
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    • pp.1309-1316
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    • 2017
  • As penetration level of Distributed Generations (DGs) on weak distribution networks gets higher, voltage rise problem can often occur due to reverse power which is not expected in conventional distribution networks. It, however, cannot be effectively solved by using conventional voltage regulating devices such as On-Load Tap Changers (OLTCs), Step Voltage Regulators (SVRs) because those do not consider the presence of DGs when determining relevant setting parameter for voltage regulation. This paper presents a scheme for voltage regulation using coordinated control between OLTC and DGs which can actively participate in the regulation. The scheme decides which device should be operated first based on the characteristics of regulating devices, in order to prevent unnecessary operation of output changes of DG and excessive tap changing operation of OLTC. Computer simulations considering daily irradiation of PV and load curve are performed by using MATLAB Simulink and performance comparison between the presented scheme and conventional ones is also made. It can be concluded from simulation results that the scheme presented is very effective to regulate voltages in distribution networks with multiple DGs.

Intergenerational Transmission of Mother-Daughter Attachment and Unmarried Adult Daughter's Ego-Resiliency (모녀애착의 세대 전수와 성인 미혼 딸의 자아탄력성)

  • Im, Kyoung-Ei;Chun, Young-Ju
    • Journal of Families and Better Life
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    • v.27 no.1
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    • pp.197-208
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    • 2009
  • The purpose of this study is to examine the intergenerational transmission of mother-daughter attachment across three generations, and to determine whether the mother-daughter attachment of three generations influences the adult daughter's ego-resilience. The subjects of this study were 310 unmarried adult women aged 20${\sim}$29, residing in the Busan area, and their 310 middle-aged mothers. The mothers responded to two sets of questionnaire investigating their attachment to their mothers (G1-G2) in the past and the present attachment to their adult daughters (G2-G3). Meanwhile, the adult daughters were given questionnaires regarding their attachment to their mothers and their ego-resiliency. The measurements used for this study were the Inventory of Parent and Peer Attachment (IPPA) and the Ego-Resiliency Scale (ER). Among the distributed questionnaires, 265 sets were collected and 252 sets were actually analyzed using SPSS 12.0 after 13 sets had been excluded due to incomplete data. Basic statistics were used such as frequency analysis, Pearson's correlation and hierarchical regression analysis. The study results were as follows. First, the adult daughter-mother (G2-G3) attachment was explained mostly by mother-grandmother (G1-G2) attachment, daughter's age, and economic status of the family. The strongest factor was the mother-grandmother attachment which implies the transmission of attachment through generations. Second, among the factors that influenced the ego-resilience of an unmarried adult daughter, attachment to one's mother perceived by the daughter turned out to be the most significant. Especially, the more positive the adult daughter's emotion toward her mother and the higher the daughter's education, the stronger the ego-resilience of the adult single daughter was. It was concluded that the mother-daughter attachment remained consistent throughout three generations, which influenced the social-psychological adjustment of the adult unmarried daughter.

Frequency Control of Battery Energy Storage System with a Deadband and Restoration Control in Microgrid (마이크로그리드에서의 데드 밴드와 회복 제어를 적용한 배터리 에너지저장시스템 주파수 제어)

  • Lee, Hak-Ju;Choi, Jin-Young;Choi, Jong-Chan;Won, Dong-Jun;Chae, Woo-Kyu;Park, Jung-Sung
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.61 no.11
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    • pp.1584-1589
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    • 2012
  • The grid-interconnected microgrid can be able to operate with and without the utility microgrid to supply electricity. when the microgrid operates in grid-connected mode, the frequency of the microgrid synchronizes with the system frequency. In this case, the frequency of the microgrid has small variation which is able to change the output of distributed generation with a droop controller. Thus, the small variation of frequency can make the distributed generation generate unnecessary electricity consistently. In this paper, we propose a frequency droop control with a dead band so as to prevent the distributed generations from generating unnecessary output while in grid-interconnected mode. In addition, a distributed generation can have a restoration control to restore the frequency changed by a droop control as a rated frequency. Also, we state the problem of restoration control with a dead band, and propose its solution when the microgrid operates in stand alone mode. We simulate the proposed droop control using PSCAD/EMTDC to verify the validity of the control.

Deve lopment of Simulator System for Microgrids with Renewable Energy Sources

  • Jeon, Jin-Hong;Kim, Seul-Ki;Cho, Chang-Hee;Ahn, Jong-Bo;Kim, Eung-Sang
    • Journal of Electrical Engineering and Technology
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    • v.1 no.4
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    • pp.409-413
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    • 2006
  • This paper deals with the design and testing of a simulator system for microgrids with distributed generations. This system is composed of a Real Time Digital Simulator (RTDS) and a power amplifier. The RTDS parts are operated for real time simulation for the microgrid model and the distributed generation source model. The power amplifiers are operated fur amplification of the RTDS's simulated output signal, which is a node voltage of the microgrid and distributed generation source. In this paper, we represent an RTDS system design, specification and test results of a power amplifier and simulation results of a PV (Photovoltaic) system and wind turbine system. The proposed system is applicable for development and performance testing of a PCS (Power Conversion System) for renewable energy sources.

Smart Grid-The next Generation Electricity Grid with Power Flow Optimization and High Power Quality

  • Hu, Jiefeng;Zhu, Jianguo;Platt, Glenn
    • Journal of international Conference on Electrical Machines and Systems
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    • v.1 no.4
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    • pp.425-433
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    • 2012
  • As the demand for electric power increases rapidly and the amount of fossil fuels decreases year by year, making use of renewable resources seem very necessary. However, due to the discontinuous nature of renewable resources and the hierarchical topology of existing grids, power quality and grid stability will deteriorate as more and more distributed generations (DGs) are connected to the grids. It is a good idea to combine local utilization, local consumption, energy storage and DGs to form a grid-friendly micro grid, these micro grids can then assembled into an intelligent power system - the smart Grid. It can optimize power flow and integrate power generation and consumption effectively. Most importantly, the power quality and grid stability can be improved greatly. This paper depicts how the smart grid addresses the current issues of a power system. It also figures out the key technologies and expectations of the smart grid.

A Fault Analysis on AC Microgrid with Distributed Generations

  • Shin, Seong-Su;Oh, Joon-Seok;Jang, Su-Hyeong;Chae, Woo-Kyu;Park, Jong-Ho;Kim, Jae-Eon
    • Journal of Electrical Engineering and Technology
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    • v.11 no.6
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    • pp.1600-1609
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    • 2016
  • As the penetration of different types of renewable energy sources (RES) and energy storage systems (ESS) increases, the importance of stability in AC microgrid is being emphasized. Especially, RES and ESS which are operated using power electronics have difference in output characteristics according to control structures. When faults like single-line-to-ground fault or islanding operation occur, this means that a fault should be interpreted in different way. Therefore, it is necessary to analyze fault characteristics in AC microgrid in case of grid-connected mode and standalone mode. In this paper, the fault analysis for AC microgrid is carried out using PSCAD/EMTDC and an overvoltage problem and the countermeasures were proposed.

The Maximum Installable DG Capacity According to Operation Methods of Voltage Regulator in Distribution Systems (배전계통의 전압조정기 운영방법에 따른 분산형전원 최대 도입 용량 산출)

  • Kim, Mi-Young
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.58 no.7
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    • pp.1263-1269
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    • 2009
  • Stable and sustainable power supply means maintaining a certain level of power quality and service while securing energy resource and resolving environmental issues. Distributed generation (DG) has become an essential and indispensable element from environmental and energy security perspectives. It is known that voltage violation is the most important constraint for load variation and the maximum allowable DG. In distribution system, sending voltage from distribution substation is regulated by ULTC (Under Load Tap Changer) designed to maintain a predetermined voltage level. ULTC is controlled by LDC (Line Drop Compensation) method compensating line voltage drop for a varying load, and the sending voltage of ULTC calls for LDC parameters. The consequence is that the feasible LDC parameters considering variation of load and DG output are necessary. In this paper, we design each LDC parameters determining the sending voltage that can satisfy voltage level, decrease ULTC tap movement numbers, or increase DG introduction. Moreover, the maximum installable DG capacity based on each LDC parameters is estimated.

Simulation Studies on Monitoring System for Interconnection of Distibuted Generation to Power Grid (분산전원 계통 연계 상황 모니터링을 위한 시뮬레이션 연구)

  • Oh, Sung-Nam;Han, Chul-Wan;Yoon, Ki-Don;Son, Young-Ik;Kim, Kab-Il
    • Proceedings of the KIEE Conference
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    • 2005.05a
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    • pp.96-98
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    • 2005
  • This paper describes a monitoring system that monitors power quality and undesirable accidents when distributed generations are connected to the power grid. Prior to develop and operate a physical monitoring system, we constitute a simulation device to simulate the monitoring processes for the situations. The simulation system consists of the server and the client that connected by communication line. This system has various functions to monitor the power quality and the connection situation. Those functions are generation, transmission, acquisition and analysis of the simulated power data. This research seems very important to get the reliable and intelligent connection algorithm through the result of simulated monitoring system. Also hereafter, as this system uses the remote monitoring system through network and constitute the data base(DB), it will play an important role in building the automation of power system efficiently and systematically.

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Power Quality Measurement Using TMS320C6701 Processor (TMS320C6701 프로세서를 이용한 전력 품질 측정)

  • Shin, Myong-Jun;Son, Young-Ik;Kim, Kab-Il
    • Proceedings of the KIEE Conference
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    • 2005.10b
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    • pp.50-52
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    • 2005
  • Research interests in PQ(Power Quality) measurement and monitoring system have been increased. This paper describes an experimental result for monitoring system that monitors power quality and undesirable accidents when distributed generations are connected to the power grid. Prior to develop a physical monitoring system for distributed generation applications, we constitute a mesuring system for the general PQ factors. In this paper, an approach to how to measure the PQ elements is presented by using TMS320C6701 processor. Simulation results using the PSCAD and the power system simulation equipment Dobel have verified the proposed measurement system.

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