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자료유형
학술저널
저자정보
이승엽 (한국전력공사) 윤민한 (동명대학교)
저널정보
대한전기학회 전기학회논문지 전기학회논문지 제66권 제12호
발행연도
2017.12
수록면
1,675 - 1,681 (7page)

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As recently the demand on electric power has been increasing, the requirement of power supply reliability has been increased. Accordingly, the number of HVDC transmission systems in the world has been steadily increased, which have been installed in the power system to transmit a large capacity power to the long distant and interconnect the power grid between different countries. etc.
#1 HVDC Transmission System was installed between Haenam and Jeju island in 1998, which is the first HVDC system furnished in korea. and has been operated until now. Before #1 HVDC Transmission System being installed, the power system of the Jeju Island is a isolated power system from that of Korea mainland. After the construction of #1 HVDC the system has made the Jeju power system more reliable and also been able to supply the mainland power, which was cheaper than that of Jeju island, to Jeju island. The construction of additional HVDC transmission system between mainland and the Jeju Island has been currently underway to cope with recent changes of the power market of the Jeju island, for examples the increase of power demand and the capacity of wind power generation. etc.
#2 HVDC Transmission System construction was completed in 2012. #3 HVDC Transmission System will be also installed according to the plan.
If all goes as planned, the Jeju power system will be operated with Multi-Infeed HVDC system connected to mainland power system. So the additional studies are needed in order to maintain the stability of the Jeju power system and get the efficiency of the Multi-Infeed HVDC system. Therefore, in this paper, the optimal operation strategies of the Multi-Infeed HVDC system between the mainland of Korea and the Jeju are suggested to ensure the stability of the power system in Jeju Island when the Multi-Infeed HVDC system is operated between two power system.

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Abstract
1. 서론
2. HVDC 시스템 안정운영 지수
3. 다기(Multi-Infeed) HVDC 송전시스템 안정운영 지수
4. 다기 HVDC 안정 운전점 추정 방안
5. 사례연구
6. 결론
References

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