• 제목/요약/키워드: Reactive Loss Sensitivity Index

검색결과 8건 처리시간 0.029초

손실감도지표의 전력계통 적용 (Applications of System Loss Sensitivity Index to Power Systems)

  • 이상중
    • 대한전기학회논문지:전력기술부문A
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    • 제49권2호
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    • pp.56-61
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    • 2000
  • In the paper, the system loss sensitivity index that implies the incremental system loss with respect to the change of bus power is derived using optimization technique. The index λ reaches $\infty$ at critical loading point and can be applied to actual power systems for following purposes. 1) Evaluation of system voltage stability 2)Optimal investment of reactive power focused on minimizing system loss and maximizing system voltage stability 3)Optimal re-location of reactive power focused on minimizing system loss and maximizing system voltage stability 4)Optimal load shedding in case of severe system contingency focused on minimizing system loss and maximizing system voltage stability. Case studies for each application have proved their effectiveness.

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손실 감도를 이용한 전압붕괴 근접도 지표 (Voltage Collapse Approximity Indeces Using The Loss Sensitivity)

  • 김용배;김건증;추진부;김원겸;이상중
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1992년도 하계학술대회 논문집 A
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    • pp.218-221
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    • 1992
  • Recent years voltage collapse phenomenon have a great attention to power system engineers. As the system size increases the voltage problem shows a very complicated and the reactive power contol problem becomes more difficult. This paper gives an efficient methods for calculating voltage collapse proximity index based on the reactive power loss sensitivity and real power loss sensitivity. The system voltages are tightly associated with the system reactive power, so the proposed voltage collapse proximity index is very usefull for the system voltage control problems. Numerical examples showed a good and reliable results.

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피상전력 손실감도에 의한 전압붕괴 근접도 지표와 무효전력 투자 (Voltage collapse proximity index based on system apparent power loss sensitivity and its application to VAR investment)

  • 이상중;김건중;김원겸;김용배;엄재선
    • 대한전기학회논문지
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    • 제44권10호
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    • pp.1290-1294
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    • 1995
  • In this paper, a new voltage collapse proximity index (VCPI) based on system apparent power loss sensitivity is proposed. The newly proposed index .lambda.$^{Sloss}$ reaches -.inf. at system voltage collapse point and can be represented by .root..lambda.$^{Ploss}$$^{2}$+.lambda.$^{Qloss}$$^{2}$ where .lambda.$^{Ploss}$ and .lambda.$^{Qloss}$ are the VCPI based on the system active and reactive power loss sensitivity respectively. These indices can be used for the system VAR investment. .DELTA.Q [VAR] is invested, step by step, by the priority of the VCPI index given for each bus. The indices use information from normal power flow equations and their Jacobians. Computation time for deriving .lambda.$^{Sloss}$ is almost same as that for power flow calculation. Two case studies prove the effectiveness of the .lambda.$^{Sloss}$ index and the VAR investment algorithm proposed.

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Optimal Voltage and Reactive Power Scheduling for Saving Electric Charges using Dynamic Programming with a Heuristic Search Approach

  • Jeong, Ki-Seok;Chung, Jong-Duk
    • Journal of Electrical Engineering and Technology
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    • 제11권2호
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    • pp.329-337
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    • 2016
  • With the increasing deployment of distributed generators in the distribution system, a very large search space is required when dynamic programming (DP) is applied for the optimized dispatch schedules of voltage and reactive power controllers such as on-load tap changers, distributed generators, and shunt capacitors. This study proposes a new optimal voltage and reactive power scheduling method based on dynamic programming with a heuristic searching space reduction approach to reduce the computational burden. This algorithm is designed to determine optimum dispatch schedules based on power system day-ahead scheduling, with new control objectives that consider the reduction of active power losses and maintain the receiving power factor. In this work, to reduce the computational burden, an advanced voltage sensitivity index (AVSI) is adopted to reduce the number of load-flow calculations by estimating bus voltages. Moreover, the accumulated switching operation number up to the current stage is applied prior to the load-flow calculation module. The computational burden can be greatly reduced by using dynamic programming. Case studies were conducted using the IEEE 30-bus test systems and the simulation results indicate that the proposed method is more effective in terms of saving electric charges and improving the voltage profile than loss minimization.

Coordinated Voltage and Reactive Power Control Strategy with Distributed Generator for Improving the Operational Efficiency

  • Jeong, Ki-Seok;Lee, Hyun-Chul;Baek, Young-Sik;Park, Ji-Ho
    • Journal of Electrical Engineering and Technology
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    • 제8권6호
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    • pp.1261-1268
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    • 2013
  • This study proposes a voltage and reactive coordinative control strategy with distributed generator (DG) in a distribution power system. The aim is to determine the optimum dispatch schedules for an on-load tap changer (OLTC), distributed generator settings and all shunt capacitor switching on the load and DG generation profile in a day. The proposed method minimizes the real power losses and improves the voltage profile using squared deviations of bus voltages. The results indicate that the proposed method reduces the real losses and voltage fluctuations and improve receiving power factor. This paper proposes coordinated voltage and reactive power control methods that adjust optimal control values of capacitor banks, OLTC, and the AVR of DGs by using a voltage sensitivity factor (VSF) and dynamic programming (DP) with branch-and-bound (B&B) method. To avoid the computational burden, we try to limit the possible states to 24 stages by using a flexible searching space at each stage. Finally, we will show the effectiveness of the proposed method by using operational cost of real power losses and voltage deviation factor as evaluation index for a whole day in a power system with distributed generators.

Rib 도파로 기반 집적 마흐젠더 간섭계 센서 (An Integrated Mach-Zehnder Interferometric Sensor based on Rib Waveguides)

  • 추성중;박정호;신현준
    • 대한전자공학회논문지SD
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    • 제47권4호
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    • pp.20-25
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    • 2010
  • 평판형 rib 도파로의 설계 및 공정기술을 바탕으로 632.8 nm에서 동작하는 집적 마흐젠더 간섭계 센서(Mach-Zehnder interferometric sensor)를 제작하였다. 단일모드와 높은 감도의 두 가지 조건을 고려하여 실리카 계열($SiO_2-SiO_xN_y-SiO_2$) rib 도파로를 설계하였고 박막증착, 사진제판, RIE (Reactive Ion Etching)와 같은 반도체 공정들을 이용해 그 기하학적 구조를 구현하였다. 제작된 rib 도파로의 광출력을 cut-back방법으로 분석한 결과, 약 4.82 dB/cm의 전파손실을 측정하였다. 동시에 크롬 식각방지 층 공정을 도입하여 마흐젠더 간섭계 칩 위에 감지영역(sensing zone)을 형상화할 때 발생하는 코어 층 손상을 방지하였다. 제작된 마흐젠더 간섭계 센서를 이용한 증류수/에탄올 혼합물 굴절률 측정실험을 통해 약 $\pi$/($4.04{\times}10^{-3}$)의 소자 감도(sensitivity)를 최종 확인하였다.

전압안정도 개선을 고려한 적정 부하차단 기법 (A study on the optimal load shedding scheme considering the voltage stability improvement)

  • 이상중;김건중;김원겸;김용배
    • 대한전기학회논문지
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    • 제44권3호
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    • pp.270-273
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    • 1995
  • This paper proposes an optimal load shedding algorithm by which the system loss can be minimized when the load shedding is unavoidable in case of severe contingency such as the outage of key generators or lines. Shedding load .DELTA.S = .DELTA.P + J.DELTA.Q(MVA) is performed on the weakest bus (on the view of voltage stability), step by step, by the priority of the I.DELTA. = SQRT(.lambda.$\_$P/$\^$2/ + .lambda.$\_$Q/$\^$2/) index given for each load bus, where .lambda.$\_$P/ and .lambda.$\_$Q/ are the sensitivity indices representing the system loss variation versus active and reactive power change of the bus load bus. All loads are assumed to be constant power loads for convenience. A 5 bus sample system proves the effectiveness of the algorithm proposed.

전압 안정도 제약계통에 대한 고온초전도 케이블 적용효과 (Effects of HTS Cable Applied to the Voltage Stability Limited Power System)

  • 이근준;황시돌
    • 조명전기설비학회논문지
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    • 제18권5호
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    • pp.169-173
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    • 2004
  • 본 논문은 전력계통의 전압 안정도 제약 문제를 해결하는데 고온 초전도 케이블을 적용하기 위한 기법을 제시하였다. 대전력계통의 유효 송전용량은 종종 전압 안정도 제약에 의해 결정된다. 기존의 초전도 케이블 응용 연구는 주로 도심지역의 고밀도 전력 수송 문제를 해결하는 대안으로 연구의 초점을 두어왔지만, 고온 초전도 케이블의 선로정수 개선효과를 이용하면 전압 안정도로 제약된 계통의 송전용량을 증가시킬 수 있어 그 응용 범위가 확대될 수 있다. 전압 안정도에 의한 최대 수송전력을 결정하는 데는 IPLAN에 의한 P-V곡선을 이용하였고, 대체 대상선로는 부하 증가시 무효전력 손실감도가 가장 큰 선로로 하였다. 결과의 타당성을 검증하기 위해 IEEE 14모선 계통을 사용하였으며, 적용결과 Case II는 70[%], Case III에서는 160[%]의 추가 수송 능력 증가를 가져올 수 있었다.