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제주지역 재생에너지 수용을 위한 HVDC 및 BESS 활용에 관한 연구
곽은섭(Eun-Sup Kwak),민재현(Jae-Hyun Min),정호철(Ho-Chul Jung),문채주(Chae-Joo Moon) 한국전자통신학회 2021 한국전자통신학회 논문지 Vol.16 No.6
재생에너지 출력제한은 송전용량과 전력계통 안정성 부족을 포함하여 다양한 원인이 있다. 제주도 지역에서는 태양광 및 풍력 발전설비의 증가로 이미 전력수요에 비해 공급이 많아지는 사례가 자주 발생하고 있으며, 이에 따라 풍력발전의 출력제한 횟수가 증가하고 있다. 본 연구에서는 제주도 전력공급의 핵심 역할을 담당하고 있는 HVDC(고전압 직류)와 BESS(배터리 에너지 저장장치) 설비를 활용하여 재생에너지의 효과적인 수용과 전력계통의 안정적 운영 방향을 찾는 것이다. 그리고 이 논문에서는 각 설비들의 실질적인 운전방안을 제시하고 향후 태양광 및 풍력 발전설비의 확대에 따른 육지 전력계통의 운영 방향을 제안한다. There are variety of reasons for renewable energy curtailment, including lack of transmission availability and grid system stability. In the Jeju island region, there are many cases in which the supply of electricity is already increased compared to the demand for electricity due to the increase of solar and wind power generation facilities, and accordingly, the number of curtailments for wind power generation is increasing. This research aims to find the direction of efficient reception of renewable energy and stable operation of the power system using HVDC(High Voltage Direct Current) and BESS(Battery Energy Storage System) facilities that are in charge of power supply in Jeju island,. And the paper suggests a practical operation plan for optimal system operation, and the direction of system operation of the land power system due to the expansion of solar and wind power generation facilities in the future.
곽은섭(Eun-Sup Kwak),문채주(Chae-Joo Moon) 한국전자통신학회 2021 한국전자통신학회 논문지 Vol.16 No.4
제한적인 탄소배출의 필요성과 연계되는 전력수요 증가는 재생에너지산업에서 폭발적인 상승을 가져오고 있다. 전력계통에서 전기공급은 항상 전기수요와 균형을 맞추어야 할 필요가 있고, 안전하고 믿을만한 안정적인 운영을 유지하기 위하여 계통손실이 발생한다. 높은 비율의 재생에너지 보급을 갖는 전력계통에서 과도 안정도, 미소신호 안정도 및 주파수 안정도와 같은 넓은 범위의 3가지의 난제가 있다. 과도안정도는 선로계전기 동작이나 발전기 탈락과 같은 장애에 대한 계통응답을 해석하는 것이다. 미소신호 안정도는 계통관성 저하에 따른 전압불안정, 주파수 급변, 전력진동 등이 발생가능한 계통에서 조그만 증분같은 작은 동요가 일어날 때 전력계통 동기를 유지하기 위한 계통의 기능이다. 주파수 안정도는 발전과 부하 사이에 심한 불균형이 발생하는 중대 계통혼란에서도 정상 주파수를 유지하기 위한 전력계통의 기능으로 간주한다. 본 논문에서 재생에너지 보급계획에 따른 계통모의를 수행하여 3종류 안정도를 검토하며, 또한 재생에너지원이 계통안정도에 미치는 영향을 분석한다. Growing demand for electricity, when combined with the need to limit carbon emissions, drives a huge increase in renewable energy industry. In the electric power system, electricity supply always needs to be balanced with electricity demand and network losses to maintain safe, dependable, and stable system operation. There are three broad challenges when it comes to a power system with a high penetration of renewable energy: transient stability, small signal stability, and frequency stability. Transient stability analyze the system response to disturbances such as the loss of generation, line-switching operations, faults, and sudden load changes in the first several seconds following the disturbance. Small signal stability refers to the system’s ability to maintain synchronization between generators and steady voltages when it is subjected to small perturbations such as incremental changes in system load. Frequency stability refers to the ability of a power system to maintain steady frequency following a severe system upset resulting in significant imbalance between generation and load. In this paper, we discusses these stability using system simulation by renewable energy deployment plan, and also analyses the influence of the renewable energy sources to the grid stability.
Frequency Stability Enhancement of Power System using BESS
유성수,곽은섭,문채주 한국전자통신학회 2022 한국전자통신학회 논문지 Vol.17 No.4
Korea has the characteristics of traditional power system such as large-scale power generation and large-scale power transmission systems, including 20 GW large-scale power generation complexes in several regions with unit generator capacity exceeding 1.4 GW, 2−3 ultra-high-voltage transmission lines that transport power from large-scale power generation complexes, and 6 ultra-high-voltage transmission lines that transport power from non-metropolitan areas to the metropolitan area. Due to the characteristics of the power system, the penetration level for renewable energy is low, but due to frequency stability issue, some generators are reducing the output of generators. In the future, the issue of maintaining the stability of the power system is expected to emerge as the most important issue in accordance with the policy of expanding renewable energy. When non-inertial inverter-based renewable energy, such as solar and wind power, surges rapidly, the means to improve the power system stability in an independent system is to install a natural inertial resource synchronous condenser (SC) and a virtual inertial resource BESS in the system. In this study, we analyzed the effect of renewable energy on power system stability and the BESS effect to maintain the minimum frequency through a power system simulation. It was confirmed that the BESS effect according to the power generation constraint capacity reached a maximum of 122.81%. BESS is very slow in response time compared to natural inertia, so it is very important to operate the BESS combined with the synchronous condenser as a controller for improving transient stability.