• Title/Summary/Keyword: HVDC system

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The Impact of VSC-HVDC Connected an Offshore Wind Power in Voltage Distribution of the AC Power System (해상풍력 연계용 전압형 HVDC가 AC 전력계통의 전압 분포에 미치는 영향)

  • Ban, Seung-Gil;Huh, Jae-Sun;Kang, Byoung-Wook;Kim, Jae-Chul
    • Proceedings of the KIEE Conference
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    • 2015.07a
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    • pp.237-238
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    • 2015
  • This paper analyzed the impact of Voltage Sourced Converter High Voltage Direct Current(VSC HVDC) connected an offshore wind power on the Jeju Island electrical power system. Wind power output fluctuates with the changing of wind speed. By changing wind power output occupancy into 100%, 60%, 10% respectively, we can understand the bus voltage distribution controlled by VSC HVDC. PSS/E is used to analyze steady-state simulation results which show effectiveness of the VSC HVDC for Jeju Island power system.

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VSC HVDC Site Selection Using Power Tracing (Power Tracing을 이용한 VSC HVDC 설치위치 선정)

  • Oh, Sea-Seung;Jang, Gil-Soo;Moon, Seung-Il
    • Proceedings of the KIEE Conference
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    • 2007.11b
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    • pp.162-164
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    • 2007
  • This paper presents a HVDC site selection algorithm to increase transfer capability using VSC HVDC system which can control active power as well as reactive power. Using normal powerflow results and simple index $k_r$ the HVDC site selection algorithm is enhanced and more tightly-coupled transmission lines are identified in a domain of generators.

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Analyzing Stability of Jeju Island Power System with Modular Multilevel Converter Based HVDC System

  • Quach, Ngoc-Thinh;Lee, Do Heon;Kim, Ho-Chan;Kim, Eel-Hwan
    • Journal of Electrical Engineering and Technology
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    • v.10 no.1
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    • pp.47-55
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    • 2015
  • This paper proposes the installation of a new modular multilevel converter based high-voltage direct current (MMC-HVDC) system to connect between mainland and Jeju island power systems in Korea in 2020. The purpose is to combine with two old line-commutated converters (LCC)-based HVDC system to achieve a stability of the Jeju island power system. The operation of the overall system will be analyzed in three cases: (i) wind speed is variable, (ii) either one of the LCC-HVDC systems is shutdown because of a fault or overhaul, (iii) a short circuit fault occurs at the mainland side. The effectiveness of the proposed control method is confirmed by the simulation results based on a PSCAD/EMTDC simulation program.

Operation performance analysis of Synthetic Test Circuit for Thyristor Valve Test of HVDC System (HVDC System의 Thyristor Valve Test를 위한 합성시험회로의 동작성능 분석)

  • Kim, Jong-Won;Han, Byung-Moon;Nho, Eui-Cheol;Baek, Seung-Taek;Chung, Yong-Ho
    • Proceedings of the KIPE Conference
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    • 2011.11a
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    • pp.303-304
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    • 2011
  • 본 논문은 HVDC System의 컨버터를 구성하는 Thyristor 밸브의 스위칭동작을 테스트하는 합성시험회로의 기본동작을 분석한 내용에 대해 기술하고 있다. 합성시험회로(STC : Synthetic Test Circuit)는 HVDC System의 컨버터가 동작할 때 각 Thyristor 밸브에 나타나는 턴-온 전류와 턴-오프 전압을 인위적으로 공급하여 정상동작 여부를 시험할 수 있는 모의실험회로를 의미한다. 본 연구에서는 PSCAD 프로그램을 이용하여 2kV, 200A급 Thyristor를 테스트하기 위한 합성시험회로의 시뮬레이션 모형을 개발하고 그 동작을 분석하였다. 개발한 합성시험회로의 시뮬레이션 모델은 향후 IEEE와 IEC 규정에 만족하는 새로운 합성시험회로를 개발하는데 참고 자료로 활용 될 것으로 기대된다.

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PSCAD/EMTDC Modeling/Analysis of VSC-HVDC Transmission for Cross Border Power System Interconnection

  • Kim, Jong-Yul;Yoon, Jae-Young;Kim, Ho-Yong
    • Journal of Electrical Engineering and Technology
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    • v.4 no.1
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    • pp.35-42
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    • 2009
  • When two adjacent AC systems operate at different frequency such as 50Hz and 60Hz, as in the case of ROK and Russia, the only way to practically obtain the advantages of power system interconnection is to use HVDC connection. In this paper, application of the VSC-HVDC transmission for power system interconnection between Russia and ROK is evaluated through the PSCAD/EMTDC modeling and analysis. The simulation results show the feasibility of proposed system for cross border power system interconnection.

Reliability Assessment in Hea-nam Cheju HVDC system using Well-being Method (Well-being기법을 이용한 해남-제주간 HVDC System신뢰도평가)

  • Son, Hyun-Il;Lee, Hyo-Sang;Shin, Dong-Joon;Kim, Jin-O
    • Proceedings of the KIEE Conference
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    • 2004.11b
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    • pp.227-229
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    • 2004
  • In a new competitive market environment, it is very important to determines how much power can be transferred through the network. It's known as Available Transfer Capability(ATC). This paper presents a technique to evaluate Reliability Assesment and the Available Transfer Capability of Haenam-Cheju HVDC transmission system using Well-being Method which is based on the probabilistic method. The system Well-being is categorized in terms of the system Healthy and Marginal in addition to the conventional Risk index. Haenam-Cheju HVDC system has been studied for the optimal ATC based in well-being categories.

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Feasibility Study of the application of HVDC System to Domestic Power System ' Design of the HVDC system for Sinokchun-Sedaegu 345kV Transmission line (직류변환 송전방식 국내도입 타당성 검토 : 신옥천-서대구 345kV송전선로 1회선 직류변환 설계)

  • Kim D. J.;Yoon J. Y.;Yang K. H.;Moon Y. H.;Lee D. I.;Shin G. Y.
    • Proceedings of the KIEE Conference
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    • summer
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    • pp.186-188
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    • 2004
  • This paper describes the feasibility study of HVDC system application to KEPCO power system for increasing power transfer capability or the flexibility of power delivery from one area to the other using the existing transmission line. This paper assumes the 345kV transmission line connecting between Shinokchun and Sedaegu to be converted to the DC line by replacing the AC insulator with that of DC. Then, the HVDC bipole system of 1000MVA with $\pm300kV$ is designed and the contingency studies are carried out.

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The Study on the Efficient HVDC Capacity Considering Extremely Low Probability of 765kV Double Circuit Transmission Lines Trip

  • Moon, Bong-Soo;Ko, Boyung;Choi, Jin-San
    • Journal of Electrical Engineering and Technology
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    • v.12 no.3
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    • pp.1046-1052
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    • 2017
  • The load on the power grid of South Korea is expected to grow continuously until the late 2020s, and it is necessary to increase the transfer capacity from the Eastern grid to the Seoul-Gyeonggi region by reinforcing the transmission network for the electric power system to remain stable. To this end, the grid reinforcement by two bipole LCC HVDC transmission systems have been considered on account of the public acceptability and high growth of the fault current level, even though an additional 765kV system construction is more economical. Since the probability of the existing 765kV double circuit transmission line trip is extremely low, a dynamic simulation study was carried out to estimate the efficient HVDC capacity able to stabilize the transient stability by utilizing the HVDC overload capability. This paper suggests the application plan to reduce the HVDC construction capacity with ensuring the transient stability during the 765kV line trip.

Trade-Off Strategies in Designing Capacitor Voltage Balancing Schemes for Modular Multilevel Converter HVDC

  • Nam, Taesik;Kim, Heejin;Kim, Sangmin;Son, Gum Tae;Chung, Yong-Ho;Park, Jung-Wook;Kim, Chan-Ki;Hur, Kyeon
    • Journal of Electrical Engineering and Technology
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    • v.11 no.4
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    • pp.829-838
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    • 2016
  • This paper focuses on the engineering trade-offs in designing capacitor voltage balancing schemes for modular multilevel converters (MMC) HVDC: regulation performance and switching loss. MMC is driven by the on/off switch operation of numerous submodules and the key design concern is balancing submodule capacitor voltages minimizing switching transition among submodules because it represents the voltage regulation performance and system loss. This paper first introduces the state-of-the-art MMC-HVDC submodule capacitor voltage balancing methods reported in the literatures and discusses the trade-offs in designing these methods for HVDC application. This paper further proposes a submodule capacitor balancing scheme exploiting a control signal to flexibly interchange between the on-state and the off-state submodules. The proposed scheme enables desired performance-based voltage regulation and avoids unnecessary switching transitions among submodules, consequently reducing the switching loss. The flexibility and controllability particularly fit in high-level MMC HVDC applications where the aforementioned design trade-offs become more crucial. Simulation studies for MMC HVDC are performed to demonstrate the validity and effectiveness of the proposed capacitor voltage balancing algorithm.

A Study on the Optimal Parameter Selection of a Power System Stabilizer and Power Converters for HVDC Linked System (HVDC 연계 시스템의 전력계통 안정화 장치와 전력변환기 적정 파라미터 선정에 관한 연구)

  • 조의상;김경철;최홍규
    • Proceedings of the Korean Institute of IIIuminating and Electrical Installation Engineers Conference
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    • 2001.11a
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    • pp.65-72
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    • 2001
  • Power system stabilizer act efficiently to damp the electromechanical oscillations in interconnected power systems. This paper presents an algorithm for the optimal parameter selection of a power system stabilizer in two-area power systems with a series HVDC link. This method is one of the classical techniques by allocating properly pole-zero positions to fit as closely as desired the ideal phase lead between the voltage reference and the generator electrical power and by changing the gain to produce a necessary damping torque over the matched frequency range. Control of HVDC converter and inverter are used a constant current loop. Proper parameters of PI controllers are obtain based on the Root-locus technique in other to have sufficient speed and stability margin to cope with charging reference values and disturbance. The small signal stability arid transient stability studies using the PSS parameters obtained from this method show that a natural oscillation frequency of the studycase system is adequately damped. Also the simulation results using the HVDC converter and inverter parameters obtained from this proposed method show proper current control characteristics. The simulation used in the paper was performed by the Power System Toolbox software program based on MATLAB.

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