• 제목/요약/키워드: Feeder voltage

검색결과 141건 처리시간 0.028초

AT급전방식에서 AT간격에 따른 전압강하 및 대지누설전류에 대한 연구 (A Study on the Voltage Drop and Earth Leakage Current according to Interval of AT in the AT Feeding Method)

  • 김민석;최승혁;이종우
    • 전기학회논문지
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    • 제60권9호
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    • pp.1708-1714
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    • 2011
  • AT feeding system of the electric railway system is installed every about 10km at between the feeder and catenary in parallel and the mid-point of the transformer is connected to the rail The supply voltage of this system is doubled than rolling stock voltage. So the voltage drop is smaller than usual. And the other merit of this system is the decreasing inductive disturbance to the communication line because of the reduced current in rail which runs reversed in a point of view of rolling stock. Also, ATP(Auto Transformer Post) is installed to reduce the voltage drop and to mitigate the inductive disturbance, but still now the proper distance between the ATP and AT feeding system is not established which ranges from 2 to 10[km]. The stable result of simulation(which is set that the end of the line AT is installed) to the voltage drop and inductive disturbance can not analyzes the effect to the supply system due to the ATP. This paper analyzes the effect to the system depending on the location of ATP by forecasting the voltage drop and inductive disturbance.

A Voltage Control Method based on Constants of Four Terminals Network Modeling of Distribution Networks

  • Yang, Xia;Lim, Il-Hyung;Choi, Myeon-Song;Lee, Seung-Jae;Kim, Tae-Wan
    • Journal of Electrical Engineering and Technology
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    • 제3권3호
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    • pp.354-362
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    • 2008
  • In this paper, a new algorithm of optimal voltage control is proposed for the Distribution Automation System (DAS) based on constants of four terminal network modeling. In the proposed method, the voltage profiles along feeders are estimated from the measurement of the current and power factor by a Feeder Remote Terminal Unit (FRTU) installed at each node. Whenever the voltage profile violates the restriction, the voltage control strategy is applied to keep the voltage levels along the feeders within the pre-specified range through the modification and coordination of the transformer under-load tap changers (ULTC), step voltage regulator (SVR), as well as shunt condenser. In the case studies, the estimation and control of the voltages have been testified in a radial distribution system with 11 nodes.

Secondary Voltage Control for Reactive Power Sharing in an Islanded Microgrid

  • Guo, Qian;Wu, Hongyan;Lin, Liaoyuan;Bai, Zhihong;Ma, Hao
    • Journal of Power Electronics
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    • 제16권1호
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    • pp.329-339
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    • 2016
  • Owing to mismatched feeder impedances in an islanded microgrid, the conventional droop control method typically results in errors in reactive power sharing among distributed generation (DG) units. In this study, an improved droop control strategy based on secondary voltage control is proposed to enhance the reactive power sharing accuracy in an islanded microgrid. In a DG local controller, an integral term is introduced into the voltage droop function, in which the voltage compensation signal from the secondary voltage control is utilized as the common reactive power reference for each DG unit. Therefore, accurate reactive power sharing can be realized without any power information exchange among DG units or between DG units and the central controller. Meanwhile, the voltage deviation in the microgrid common bus is removed. Communication in the proposed strategy is simple to implement because the information of the voltage compensation signal is broadcasted from the central controller to each DG unit. The reactive power sharing accuracy is also not sensitive to time-delay mismatch in the communication channels. Simulation and experimental results are provided to validate the effectiveness of the proposed method.

선로전압조정장치(SVR)가 설치된 고압배전선로에서 전기저장장치(ESS)의 최적운용 및 적정용량 산정방안 (Optimal Operation Method and Capacity of Energy Storage System(ESS) in Primary Feeders with Step Voltage Regulator(SVR))

  • 김병기;유경상;김대진;장문석;고희상;노대석
    • 한국산학기술학회논문지
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    • 제19권6호
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    • pp.9-20
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    • 2018
  • 최근 국가의 3020정책에 따라 신재생에너지전원의 도입이 활발히 이루어지고 있는 상황이다. 하지만 신재생에너지전원중의 하나인 태양광전원이 대규모로 배전계통에 도입되어 운용될 경우, 태양광전원의 간헐적 특성에 의한 출력변동과 역조류에 의하여 수용가 전압은 규정범위($220V{\pm}6%$)를 벗어날 수 있는 문제점을 가지고 있다. 이를 해결하기 위한 방안 중 하나로, 배전선로에 기설된 선로전압조정장치를 이용한 수용가 전압조정 방안이 제안되고 있으나, 기계적으로 동작하는 선로 전압조정장치의 특성으로 인하여, 탭 변경 시간동안 수용가의 전압이 규정범위를 벗어날 가능성을 가지고 있다. 이에 본 논문에서는 선로전압조정장치 탭 변경시, 기계적인 특성에 의하여 탭 동작이 지연되는 시간동안 전기저장장치를 도입하여 전압 문제를 해결할 수 있는 전기저장장치의 최적운용전략을 제시하고, 파라메타 분석법을 이용하여 선로전압조정장치와 협조하여 운용되는 전기저장장치의 적정위치 및 적정용량 산정방안을 제안하였다. 본 논문에서 제안한 선로전압장치와 전기저장장치의 상호동작에 대한 최적운용 전략과 전기저장장치의 산정 알고리즘을 바탕으로 시뮬레이션을 수행한 결과, 선로전압조정 장치의 탭 변경 시간동안 수용가의 규정전압($220V{\pm}6%$) 여부를 검증함으로써, 본 논문에서 제안한 수법이 계통의 전압안정화에 기여할 수 있는 방안임을 확인하였다.

화학 플랜트에서의 비상발전기 용량선정 방안(PG3)에 관한 연구 (Study on Emergency Generator Capacity Selection(PG3) in the Chemical Plant)

  • 이승재;조만영;김세용;김은태;강병욱;박한민;김재철
    • 조명전기설비학회논문지
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    • 제29권12호
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    • pp.55-60
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    • 2015
  • PG and RG methods are widely known method for calculating the capacity of the emergency generator in construction electrical installation. PG and RG methods are mainly used as a saving a life, fire protection, fire fighting in construction. Because no long distance between the emergency generator and electric motor feeder, the relatively small motor power in construction electrical installation, the capacity of generator in PG and RG methods are little problem of voltage and reactive power of generator. However in many cases the application of the PG and RG method is difficult in the Chemical Plant because it is long distance between the generator and the motor Feeder and motor capacity is very large. Motor starting power factor is about 0.2 lagging power factor and motor starting current is about 6times during motor staring. Also Most of the staring current component is a reactive power component. therefore, it is many cases that lack of reactive power and excess of allowable voltage drop limit and After selection of emergency diesel generator, problems happen during motor starting. Therefore, to be selection of effective emergency generator, active generator power, reactive power and the required reactive power during large motor starting should be considered in chemical plant. It is also required of the verification process through simulation because hand calculation is very difficult considering study cases.

능동형 전압제어를 통한 교류 전기철도 급전망에 대한 전력손실 분석 (A Power Losses Analysis of AC Railway Power Feeding Network using Adaptive Voltage Control)

  • 정호성;김형철;신승권;김진호;윤기용;조용현
    • 전기학회논문지
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    • 제62권11호
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    • pp.1621-1627
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    • 2013
  • This paper compares power losses between voltage controlled before and after using power conversion device in AC feeding system. For this purpose we present voltage control procedures and criteria and model high speed line and train using PSCAD/EMTDC to compare power losses in various feeding condition. Power losses of the simulation result in power control before and after in single point feeding system was reduced maximum 0.37 MW(23.8 %) and average 0.23 MW(20.5 %) when one vehicle load operates maximum load condition. When three vehicles operate maximum load condition in one feeder section, power losses after voltage control was reduced 1.03 MW(49.5%) compared to before voltage control. And, power loss of parallel feeding system is reduced the average 0.08 MW(7.2 %) compared to the single feeding system. In conclusion, adaptive voltage control method using power conversion device can reduce power losses compared with existing method.

전압조정 측면에서 본 소형 열병합발전 배전계통 도입량 평가 (Evaluation of Interconnection Capacity of SCOGNs to the power Distribution Systems from the Viewpoint of Voltage Regulation)

  • 최준호;김재철
    • 대한전기학회논문지:전력기술부문A
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    • 제48권9호
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    • pp.1096-1102
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    • 1999
  • This paper discusses the evaluation of interconnection capacity of small cogeneration(SCOGN) systems to the power distribution systems from the viewpoint of voltage regulation. Power utilities are required to keep the customers' voltage profile over a feeder close to the rated value under all load conditions. However, it is expected that the interconnection of SCOGNs to the power distribution systems impacts on the existing voltage regulation method and customers' voltage variations. Therefore, SCOGNs should be integrated to the automated power distribution systems to prevent interconnection problems and supply high quality electricity to the customers. For these reasons, we should proceed with the evaluation of interconnection capacity of SCOGNs to the power distribution systems. However, it is generally impossible to perform actual testing on the power distribution systems, and standardized methodologies and guidelines are not developed to evaluate it. The criterion indexes for voltage regulation and variations are presented in order to evaluate the interconnection capacity of SCOGNs to the power distribution systems. In addition, the evaluation methodology of interconnection capacity of SCOGNs for power distribution systems is presented. It is expected that the resulted of this paper are useful for power system planners to determine the interconnection capacity of SCOGNs and dispersed storage and generation (DSG) systems to the power distribution systems.

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Self-Feeder Driver for Voltage Balance in Series-Connected IGBT Associations

  • Guerrero-Guerrero, A.F.;Ustariz-Farfan, A.J.;Tacca, H.E.;Cano-Plata, E.A.
    • Journal of Power Electronics
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    • 제19권1호
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    • pp.68-78
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    • 2019
  • The emergence of high voltage conversion applications has resulted in a trend of using semiconductor device series associations. Series associations allow for operation at blocking voltages, which are higher than the nominal voltage for each of the semiconductor devices. The main challenge with these topologies is finding a way to guarantee the voltage balance between devices in both blocking and switching transients. Most of the methods that have been proposed to mitigate static and dynamic voltage unbalances result in increased losses within the device. This paper introduces a new series stack topology, where the voltage unbalances are reduced. This in turn, mitigates the switching losses. The proposed topology consists of a circuit that ensures the soft switching of each device, and one auxiliary circuit that allows for switching energy recovery. The principle for the topology operation is presented and experimental tests are performed for two modules. The topology performs excellently for switching transients on each of the devices. The voltage static unbalances were limited to 10%, while the activation/deactivation delay introduced by the lower module IGBT driver takes place in the dynamic unbalances. Thus, the switching losses are reduced by 40%, when compared to hard switching configurations.

PSCAD/EMTDC를 이용한 배전계통의 선로전압조정장치와 전지전력저장장치의 모델링에 관한 연구 (A Study on the Modeling of Step Voltage Regulator and Energy Storage System in Distribution System Using the PSCAD/EMTDC)

  • 김병기;김기영;이주광;최성식;노대석
    • 한국산학기술학회논문지
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    • 제16권2호
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    • pp.1355-1363
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    • 2015
  • 태양광전원이 연계된 배전계통에서 발생되는 과전압문제를 해소하기 위하여, 계통에서 발생하는 전압변동에 대응하여 전압을 일정하게 유지시킬 수 있는 선로 전압 조정장치(Step Voltage Regulator)의 도입이 제안되고 있다. 일반적으로 SVR은 전압조정 방법에 의하여 Tap위치를 결정한 후, 일정시간이 지나면 Tap이 동작하도록 운용된다. 하지만 지연시간(30sec) 이후에 Tap을 동작시키는 SVR의 특성에 의하여, 이 시간동안 수용가전압은 규정치를 벗어날 가능성을 가지고 있다. 따라서 본 논문에서는 배전계통의 상용소프트웨어인 PSCAD/EMTDC를 이용하여 LDC방법에 의한 SVR의 전압조정 모델링과, 양방향으로 유무효전력을 제어할 수 있는 전지전력저장장치(Battery Energy Storage System)의 모델링을 제안하였다. 또한 SVR의 문제점을 보완하기 위하여, BESS와의 협조방안에 대한 모델링을 제시하였다. 상기에서 제안한 모델링을 바탕으로 수용가의 전압특성을 분석한 결과, SVR과 BESS에 의하여 안정적으로 전압이 유지됨을 확인하여, 본 연구에서 제시한 모델링의 유효성을 입증하였다.

DC 3000V용 보조전원장치 개발 (The Development of APU(Auxiliary Power Supply Unit) for DC 3000V)

  • 김진용;김연충;한정수
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2011년도 춘계학술대회 논문집
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    • pp.1654-1660
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    • 2011
  • The korea Electric Railway feeder voltage is DC 1500V and AC 250000V. The auxiliary power supply of the vehicle auxiliary power units for domestic electrical feed has been developed with domestic technology hyeonchae mounted station, and domestic uses, such as voltage, have been exported to other countries. However, do not use at domestic that can be used for DC 3000V voltage auxiliary power unit does not develop, vehicle exports global. This has already been replaced by imported products from other nations is a real situation. Thus, our auxiliary power unit for the DC 3000V was developed, it will be exported to Ukraine. In this paper, We introduced circuit and structure of developed auxiliary power supply unit, and verified the performance with output characteristic of the auxiliary power unit.

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