• Title/Summary/Keyword: HVDC System

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Evaluation of Optimal Transfer Capability in Power System Interconnection (연계된 계통간의 최적 송전 용량 산정)

  • Son, Hyun-Il;Bae, In-Su;Jeon, Dong-Hoon;Kim, Jin-O
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.59 no.4
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    • pp.679-685
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    • 2010
  • As the electrical power industry is restructured, the electrical power exchange is becoming extended. One of the key information used to determine how much power can be transferred through the network is known as available transfer capability (ATC). To calculate ATC, traditional deterministic approach is based on the severest case, but the approach has the complexity of procedure. Therefore, novel approach for ATC calculation is proposed using cost-optimization method, well-being method and risk-benefit method in this paper. This paper proposes the optimal transfer capability of HVDC system between mainland and a separated island in Korea through these three methods. These methods will consider production cost, wheeling charge through HVDC system and outage cost with one depth (N-1 contingency).

Evaluation of Optimal Transfer Capability in Power System interconnection (연계된 계통간의 최적 송전용량 산정)

  • Son, Hyun-Il;Choi, Ah-Reum;Lee, Sung-Hoon;Kim, Jin-O;Jeon, Dong-Hoon
    • Proceedings of the KIEE Conference
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    • 2009.07a
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    • pp.195_196
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    • 2009
  • As the electrical power industry is restructured, the electrical power exchange is becoming extended. One of the key information used to determine how much power can be transferred through the network is known as available transfer capability (ATC). To calculate ATC, traditional deterministic approach is based on the severest case, but the approach has the complexity of procedure. Therefore, novel approach for ATC calculation is proposed using cost-optimization method in this paper, and is compared with well-being method and risk-benefit method. This paper proposes the optimal transfer capability of HVDC system between mainland and a separated island in Korea through these three methods. These methods will consider production cost, wheeling charge through HVDC system and outage cost with one depth (N-1 contingency).

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Development of the RTDS Training Course for Control of Harmonic Currents using Passive Filters (수동필터를 이용한 RTDS 고조파 제거 모의 훈련 코스 개발)

  • Lee, N.H.;Cho, Y.S.;Lee, C.K.;Lee, W.H.;Shin, J.H.;Kim, T.K.
    • Proceedings of the KIEE Conference
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    • 2005.07a
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    • pp.304-306
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    • 2005
  • This paper presents the RTDS training course on using passive filters for control of harmonic currents. The course can show harmonic currents in porer system, which is occurred by function generators, with Fourier analysis function of RTDS and the effect of passive filters implemented in RTDS to eliminate harmonics. In addition to, With Jeju-Haenam HVDC system, we have simulated the effect of passive filters on harmonic currents occurred by massive power conversion system of HVDC.

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Evaluation of ATC in Haenam-Cheju HVDC System Using Cost Calculation (해남-제주간 직류송전시스템의 비용산정을 통한 ATC계산)

  • Son Hyun Il;Shin Dong Joon;Kim Jin O;Kim Kyu Ho;Lee Hyo Sang
    • Proceedings of the KIEE Conference
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    • summer
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    • pp.725-727
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    • 2004
  • As the electrical power industry is restructured, the electrical power exchange is extended. In Cheju, demand increases about $10\%$ every year To cope with future demand, HVDC System usage should grow, This paper proposes optimal transfer capability of Haenam-Cheju fm System through cost optimization that considers generating cost, receiving cost and outage cost.

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A Design Methodology of Digital Controller Considering Time Delay Effect for a Modular Multilevel Converter VSC HVDC System (모듈형 멀티레벨 전압형 HVDC 시스템을 위한 시간 지연을 고려한 디지털 제어기의 설계)

  • Song, Ji-Wan;Ku, Nam-Joon;Kim, Rae-Young
    • The Transactions of the Korean Institute of Power Electronics
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    • v.21 no.1
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    • pp.49-57
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    • 2016
  • A modular multilevel converter is widely adapted for a high-voltage direct current power transmission system. This study proposes a design methodology for a novel digital control that mitigates the negative effects caused by time delay, including communication transport delay for a modular multilevel converter. The modeling and negative effect of time delay are analyzed theoretically in a frequency domain, and its compensation methodology based on an inverse model is described fully with practical considerations. The proposed methodology is verified through several simulation results using a modular 21-level converter system.

An Application of Proportional-Resonant Controller in MMC-HVDC System under Unbalanced Voltage Conditions

  • Quach, Ngoc-Thinh;Ko, Ji-Han;Kim, Dong-Wan;Kim, Eel-Hwan
    • Journal of Electrical Engineering and Technology
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    • v.9 no.5
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    • pp.1746-1752
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    • 2014
  • This paper presents an application of proportional-resonant (PR) current controllers in modular multilevel converter-high voltage direct current (MMC-HVDC) system under unbalanced voltage conditions. The ac currents are transformed and controlled in the stationary reference frame (${\alpha}{\beta}$-frame). Thus, the complex analysis of the positive and negative sequence components in the synchronous rotating reference frame (dq-frame) is not necessary. With this control method, the ac currents are kept balanced and the dc-link voltage is constant under the unbalanced voltage fault conditions. The simulation results based on a detailed PSCAD/EMTDC model confirm the effectiveness of the proposed control method.

Level Selection Algorithm with Fixed Sampling Frequency for Modular Multilevel Converter (고정 샘플링 주파수에서의 모듈형 멀티레벨 컨버터 레벨 선택 알고리즘)

  • Kim, Chan-Ki;Park, Chang-Hwan;Kim, Jang-Mok
    • The Transactions of the Korean Institute of Power Electronics
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    • v.23 no.6
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    • pp.415-423
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    • 2018
  • This study uses a level selection algorithm with fixed sampling frequency for modular multilevel converter (MMC) systems. Theoretically, the proposed method increases the level infinitely while the sampling time remains the same. The proposed method called cluster stream buffer (CSB) consists of several clusters, wherein each cluster is composed of 32 submodules that depend on the level of the submodules in the MMC system. To increase the level of the MMC system, additional clusters are used, and the sampling time between clusters is determined from the sampling time between levels needed for utilizing the entire level from the MMC system. This method is crucial in the control of MMC-type HVDC systems because it improves scalability and precision.

A STUDY ON SOLUTION AGAINST CORE SATURATION INSTABILITY AT AN HVDC CONVERTER

  • Yang Byeong-Mo;Kim Chan-Ki
    • Proceedings of the KIPE Conference
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    • 2001.10a
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    • pp.591-599
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    • 2001
  • The paper identifies a severe form of core saturation instability in an DC/AC interaction system. It then seeks solutions to the problem by HVDC control means. This is achieved by a proper design of the Voltage Dependent Current Order Limiter (VDCOL), the Current Regulator and Timing Pulse generator. Supplementary control loops have also been introduced to result in a satisfactory performance as compared to that obtained one with the use of uncharacteristic harmonic filter on the AC side. Robustness of all the options has been demonstrated through recovery performance of the DC link in response to both I-phase and 3-phase 5 cycle faults on both rectifier and inverter commutating buses.

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A New Definition of Short-circuit Ratio for Multi-converter HVDC Systems

  • Liu, Dengfeng;Shi, Dongyuan;Li, Yinhong
    • Journal of Electrical Engineering and Technology
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    • v.10 no.5
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    • pp.1958-1968
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    • 2015
  • In this paper, a new definition of short-circuit ratio concept for multi-converter HVDC systems is proposed. Analysis results of voltage interaction between converters show that the reactive power-voltage characteristic of a converter has a dominant effect on voltage interaction level compared with its active power-voltage characteristic. Such a relation between converter reactive power and voltage interaction level supports taking the former into account in the definition of short-circuit ratio concept for multi-converter systems. The proposed definition is verified by the method of maximum power curve for various system configurations. Furthermore, a formula to calculate transient overvoltage for multi-converter systems is derived based on the proposed definition, and the efficiency of the derived formula is verified.