김성열 교수
Sung-Yeol Kim
한양대학교 전기·생체공학부 · 공학
연구실 소개
김성열 교수의 연구실은 분산 에너지 자원과 전력망의 안정성 확보를 핵심으로 하여, 초전도 fault current 리미터, 마이크로그리드, 재생 가능 에너지 통합 시스템, 전기버스 및 플로팅 태양광 발전 등 다양한 에너지 기술의 통합적 응용을 연구하고 있습니다. 특히, 전력망의 고장 전류 증가 문제 해결과 재생 가능 에너지의 효율적 통합을 위한 최적 설비 조합 및 신뢰성 평가 기법 개발에 초점을 맞추고 있습니다. 또한, 도시 및 산간 지역의 에너지 자립형 시스템 설계와 전력 수요 조절 기술을 통해 지속 가능한 에너지 전환을 선도하고 있습니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
15This paper proposes a reliability model for a superconducting fault current limiter (SFCL), which is a new alternative in limiting the fault current recently increasing in a network. An evaluation technique for distribution reliability that uses the improved failure rate of all protective devices in a network, depending on the location of the SFCL, is also proposed. As a result, it is expected that the SFCL makes the reliability of adjacent equipment on an existing network improve, and these cha
The microgrid is a power distribution system that supplies power from distributed generation to end-users. Demonstration projects and R&D regarding microgrids are currently in development in several advanced countries. In South Korea, renewable energy-based microgrid demonstration projects are carried out mainly as island or university campus grids. These R&D efforts aim to popularize microgrid systems in South Korea while considering the limited land availability, which impedes the wide
This paper proposes a methodology to determine the optimal capacity of renewable distributed generation (RDG). The objective in this paper is to maximize cost-savings of energy not supplied (ENS) as well as cost-savings of energy loss according to RDG installation in a distribution network. Additionally, in order to achieve this multi-objective optimization problem, both a restoration matrix and restoration availability are newly proposed. In this case study, a practical Korea Electric Power Cor
The large-scale adoption of electric vehicles in the public sector is essential for achieving emission reduction targets for transportation. In particular, the replacement of buses with internal combustion engines, which travel long distances and produce massive greenhouse gas emissions, by their electric counterparts can drastically reduce emissions. A variety of electric buses with different power supply systems are currently available, and their performance, charging type, battery capacity, a
In recent years, the frequency of power demand imbalance and negative price phenomenon has risen due to the rapid expansion of renewable energy sources (RES). Because of this, a means to reduce the curtailment of RES by utilizing surplus energy is essential. This paper focuses on reducing the curtailment of wind turbines (WT) with high output intermittency and minimizing the investment cost of IES via an integrated energy system (IES). The IES operation seeks to improve the acceptability and eff
As electric power demand has constantly been increasing, more bulk power systems have been installed in a network. For environmental and technical reasons, the amount of distributed resources is increasing considerably in a distribution network. Therefore, distribution networks have become more complex mesh networks, which improve the reliability of distribution system and the flexibility of network operation. These changes cause fault current to increase. As a result, the fault current will exc
This paper proposes a novel method for integrating renewable energy sources (RES) and power-to-gas (P2G) technologies to optimize energy utilization efficiency as RES capacity increases. The method introduces the potential RES penetration index (PRPI) to select the appropriate capacity of P2G facilities for improved RES acceptance rates. In order to establish input constraints for RES and P2G facilities, this study determines the saturation point of RES (R-SP) and the saturation point of P2G (PG
The rapid displacement of synchronous generators (SGs) by renewable energy sources has resulted in low-inertia power systems that are increasingly vulnerable to frequency instability, poor power-sharing coordination, and limited fault recovery. In this context, this paper proposes a comprehensive control and system-level realization of Hybrid-Compatible Grid-Forming Inverters (HC-GFIs)- a novel inverter framework designed to emulate synchronous generator behavior while enhancing interoperability
To advance carbon neutrality policies, many countries are increasingly integrating Renewable Energy Sources (RESs) into their energy mix. However, for harnessing natural energy in power generation, RESs present challenges in output control, potentially leading to power imbalances. Such imbalances, when coupled with an excessive reliance on unpredictable RES, may necessitate the curtailment of grid-integrated renewable generation, halting production despite available capacity. This paper proposes
Distribution network has become more and more complex as mesh network to improve the distribution system reliability and increase the flexibility and agility of network operation. Also, as electric power demand of customers is constantly increasing, more bulk power systems are needed to install in a network By development of renewable energies and high-efficient facilities and deregulated electricity market, moreover, the amount of distributed resource is considerably increasing in distribution
Establishing electric vehicle supply equipment (EVSE) to keep up with the increasing number of electric vehicles (EVs) is the most realistic and direct means of promoting their spread. Using traffic data collected in one area; we estimated the EV charging demand and selected priority fast chargers; ranging from high to low charging demand. A queueing model was used to calculate the number of fast chargers required in the study area. Comparison of the existing distribution of fast chargers with t
As the hydrogen economy recently gains momentum, the Korean government is actively encouraging Independent Power Producers (IPPs) to leverage hydrogen energy. The surging uncertainties in the power market, precipitated by the rapid increase in renewable energy sources (RES), necessitates IPPs to formulate a new benefit structure that utilizes green hydrogen. However, the current economic challenges associated with the operation of RES linked to water electrolysis result in diminished participati
In South Korea, Renewable Energy Sources (RES) have been increasing with the application of energy policies, such as Feed in Tariff (FIT) and the Renewable Portfolio Standard (RPS). However, a rapid increase in RES supply leads to an uncertain power supply due to the intermittent output of RES. A representative example is the curtailment of Wind Turbines (WT), which frequently occurs in Jeju Island, South Korea. The proportion of RES power on Jeju Island is 67%, and there are cases where WT is c
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