허견 교수
Kyunghwan Heo
연세대학교 화공생명공학과
연구실 소개
허견 교수의 연구실은 고밀도 재생 가능 에너지 통합과 스마트 그룹 전력망의 안정성 확보를 핵심 목표로 삼고 있습니다. 특히, 인버터 기반 발전 시스템의 주파수 안정성 제어, 고압직류송전(HVDC) 시스템의 고조파 및 인rush 전류 제어, 그리고 분산 전원 환경에 적합한 지능형 보호 제어 기술 개발에 주력하고 있습니다. 연구는 실험적 검증과 시뮬레이션을 병행하여 실제 전력망 적용 가능성을 높이고 있습니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
5To arrest a frequency nadir, a stepwise inertial control (SIC) scheme generates a constant active power reference signal of a wind turbine generator (WTG) immediately after a disturbance and maintains it for the predetermined time. From that point, however, the reference of a WTG abruptly decreases to restore the rotor speed for the predefined period. The abrupt decrease of WTG output power will inevitably cause a second frequency dip. In this paper, we propose a modified SIC scheme of a doubly-
This paper presents simulation and small-scale experimental tests of a fault current controller. Smart fault controller as proposed and proven conceptually in our previous work is promising technology for the smart power grid where distributed and even stochastic generation sources are prevalent and grid operations are more dynamic. Existing protection schemes simply limiting the fault current to the pre-determined set values may not show best performance and even lead to coordination failures,
The ac side current of an high voltage direct current (HVDC) converter is characterized by highly non-sinusoidal waveform. If the harmonic current is allowed to flow in the connected ac system, it may cause unacceptable levels of distortion. Therefore, ac side filters are required as part of the total HVDC converter station, in order to reduce the harmonic distortion of the ac side current and voltage to acceptably low levels. The ac side filters are also employed to compensate network requested
This paper presents the method for mitigating inrush current of AC filter circuits in Line Current Commutated (LCC) HVDC converter stations using circuit breaker closing control with comparative analysis data with Pre-Insertion resistor. Due to the capacitive characteristics of AC filter circuits, high inrush current is inevitable when a circuit breaker is closed. This causes mechanical stress to filter components. The inrush current is depending on several factors such as system’s Short Circuit
While most of the existing protection schemes have been designed with local information around individual components, these local schemes are not considered capable of protecting the modern electric power gird with growing complexity. Recent blackouts in North America and Europe have renewed the emphasis on coordinated protection and control actions to avoid systemwide blackouts, utilizing all of the available grid information. Thus, this paper proposes a new methodology, Agent-based Colored Pet
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