• 제목/요약/키워드: Maximum rate of change of frequency and frequency support

검색결과 5건 처리시간 0.023초

Inertial Control of a DFIG-based Wind Power Plant using the Maximum Rate of Change of Frequency and the Frequency Deviation

  • Lee, Hyewon;Kim, Jinho;Hur, Don;Kang, Yong Cheol
    • Journal of Electrical Engineering and Technology
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    • 제10권2호
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    • pp.496-503
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    • 2015
  • In order to let a wind generator (WG) support the frequency control of a power system, a conventional inertial control algorithm using the rate of change of frequency (ROCOF) and frequency deviation loops was suggested. The ROCOF loop is prevailing at the initial stage of the disturbance, but the contribution becomes smaller as time goes on. Moreover, its contribution becomes negative after the frequency rebound. This paper proposes an inertial control algorithm of a wind power plant (WPP) using the maximum ROCOF and frequency deviation loops. The proposed algorithm replaces the ROCOF loop in the conventional inertial control algorithm with the maximum ROCOF loop to retain the maximum value of the ROCOF and eliminate the negative effect after the frequency rebound. The algorithm releases more kinetic energy both before and after the frequency rebound and increases the frequency nadir more than the conventional ROCOF and frequency loops. The performance of the algorithm was investigated under various wind conditions in a model system, which includes a doubly-fed induction generator-based WPP using an EMTP-RV simulator. The results indicate that the algorithm can improve the frequency drop for a disturbance by releasing more kinetic energy.

주파수의 최대 변화율을 이용한 풍력단지 가상관성제어 (Virtual Inertial Control of a Wind Power Plant using the Maximum Rate of Change of Frequency)

  • 김두연;김진호;이진식;김연희;전영환;강용철
    • 전기학회논문지
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    • 제62권7호
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    • pp.918-924
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    • 2013
  • In a conventional power system, the frequency is recovered to the nominal value by the inertial, primary, and secondary responses of the synchronous generators (SGs) after a large disturbance such as a generator tripping. For a power system with high wind penetration, the system inertia is significantly reduced due to the maximum power point tracking control based operation of the variable speed wind generators (WGs). This paper proposes a virtual inertial control for a wind power plant (WPP) based on the maximum rate of change of frequency to release more kinetic energy stored in the WGs. The performance of the proposed algorithm is investigated in a model system, which consists of a doubly fed induction generator-based WPP and SGs using an EMTP-RV simulator. The results indicate that the proposed algorithm can improve the frequency nadir after a generator tripping. In addition, the algorithm can lead the instant of a frequency rebound and help frequency recovery after the frequency rebound.

Rotor Speed-based Droop of a Wind Generator in a Wind Power Plant for the Virtual Inertial Control

  • Lee, Jinsik;Kim, Jinho;Kim, Yeon-Hee;Chun, Yeong-Han;Lee, Sang Ho;Seok, Jul-Ki;Kang, Yong Cheol
    • Journal of Electrical Engineering and Technology
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    • 제8권5호
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    • pp.1021-1028
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    • 2013
  • The frequency of a power system should be kept within limits to produce high-quality electricity. For a power system with a high penetration of wind generators (WGs), difficulties might arise in maintaining the frequency, because modern variable speed WGs operate based on the maximum power point tracking control scheme. On the other hand, the wind speed that arrives at a downstream WG is decreased after having passed one WG due to the wake effect. The rotor speed of each WG may be different from others. This paper proposes an algorithm for assigning the droop of each WG in a wind power plant (WPP) based on the rotor speed for the virtual inertial control considering the wake effect. It assumes that each WG in the WPP has two auxiliary loops for the virtual inertial control, i.e. the frequency deviation loop and the rate of change of frequency (ROCOF) loop. To release more kinetic energy, the proposed algorithm assigns the droop of each WG, which is the gain of the frequency deviation loop, depending on the rotor speed of each WG, while the gains for the ROCOF loop of all WGs are set to be equal. The performance of the algorithm is investigated for a model system with five synchronous generators and a WPP, which consists of 15 doubly-fed induction generators, by varying the wind direction as well as the wind speed. The results clearly indicate that the algorithm successfully reduces the frequency nadir as a WG with high wind speed releases more kinetic energy for the virtual inertial control. The algorithm might help maximize the contribution of the WPP to the frequency support.

보행스피드에 대한 상체 공헌도의 연령에 따른 변화 (Age-Related Change of Upper Body Contribution to Walking Speed)

  • 배영상
    • 한국운동역학회지
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    • 제17권4호
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    • pp.27-36
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    • 2007
  • The purpose of this study was to investigate the effect of the upper body in order to increase a propulsive force in the old's walking. The subjects were each 10 males, the latter term of the aged and former term of the aged. There were three walking speeds of slow(about 5km/h), medium(about 6km/h), and maximum speed(about 7km/h). The subjects walking 11m were filmed the 5m section (from 3m to 8m) by 2-video cameras using three dimensional cinematography. And we computed different mechanical quantities and especially computed the relative momentum in order to achieve this study's aim. In this study, we was able to acquire some knowledge. The step length and step frequency increased in proportion to the walking speed, and the faster walking speed, the shorter ratio of supporting time( both legs supporting time/one step length time). When it was one leg support phase, the torso was indicated to generate the momentum in order to produce the propulsive force of walking. The upper and lower body had a cooperative relation for walking such as keeping step rate with the arms to legs and maintaining the body balance. The opposition phase for upward-and-downward direction of the torso and arms in walking was functioned to prevent the increase rapidly toward vertical direction of the center of gravity. The arms had contributed to coordinate the tempo of legs and the posture maintenance of the upper body. And by absorbing the relative momentum from the upper torso with arms to the lower torso, it had the rhythmical movement on upward-and-downward direction reducing the vertical reaction force. On account of the relations of absorption and generation of the propulsive force and the production of vertical impulse in the lower torso when walking by maximum speed, it was showed that the function of lower torso was come up as important problem for the mechanical posture stability and propulsive force coordination.

자율 주행을 위한 Edge to Edge 모델 및 지연 성능 평가 (Edge to Edge Model and Delay Performance Evaluation for Autonomous Driving)

  • 조문기;배경율
    • 지능정보연구
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    • 제27권1호
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    • pp.191-207
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    • 2021
  • 오늘날 이동통신은 급증하는 데이터 수요에 대응하기 위해서 주로 속도 향상에 초점을 맞추어 발전해 왔다. 그리고 5G 시대가 시작되면서 IoT, V2X, 로봇, 인공지능, 증강 가상현실, 스마트시티 등을 비롯하여 다양한 서비스를 고객들에게 제공하기위한 노력들이 진행되고 있고 이는 우리의 삶의 터전과 산업 전반에 대한 환경을 바꿀 것으로 예상되고 되고 있다. 이러한 서비스를 제공하기위해서 고속 데이터 속도 외에도, 실시간 서비스를 위한 지연 감소 그리고 신뢰도 등이 매우 중요한데 5G에서는 최대 속도 20Gbps, 지연 1ms, 연결 기기 106/㎢를 제공함으로써 서비스 제공할 수 있는 기반을 마련하였다. 하지만 5G는 고주파 대역인 3.5Ghz, 28Ghz의 높은 주파수를 사용함으로써 높은 직진성의 빠른 속도를 제공할 수 있으나, 짧은 파장을 가지고 있어 도달할 수 있는 거리가 짧고, 회절 각도가 작아서 건물 등을 투과하지 못해 실내 이용에서 제약이 따른다. 따라서 기존의 통신망으로 이러한 제약을 벗어나기가 어렵고, 기반 구조인 중앙 집중식 SDN 또한 많은 노드와의 통신으로 인해 처리 능력에 과도한 부하가 발생하기 때문에 지연에 민감한 서비스 제공에 어려움이 있다. 그래서 자율 주행 중 긴급 상황이 발생할 경우 사용 가능한 지연 관련 트리 구조의 제어 기능이 필요하다. 이러한 시나리오에서 차량 내 정보를 처리하는 네트워크 아키텍처는 지연의 주요 변수이다. 일반적인 중앙 집중 구조의 SDN에서는 원하는 지연 수준을 충족하기가 어렵기 때문에 정보 처리를 위한 SDN의 최적 크기에 대한 연구가 이루어져야 한다. 그러므로 SDN이 일정 규모로 분리하여 새로운 형태의 망을 구성 해야하며 이러한 새로운 형태의 망 구조는 동적으로 변하는 트래픽에 효율적으로 대응하고 높은 품질의 유연성 있는 서비스를 제공할 수 있다. 이러한 SDN 구조 망에서 정보의 변경 주기, RTD(Round Trip Delay), SDN의 데이터 처리 시간은 지연과 매우 밀접한 상관관계를 가진다. 이 중 RDT는 속도는 충분하고 지연은 1ms 이하이기에 유의미한 영향을 주는 요인은 아니지만 정보 변경 주기와 SDN의 데이터 처리 시간은 지연에 크게 영향을 주는 요인이다. 특히, 5G의 다양한 응용분야 중에서 지연과 신뢰도가 가장 중요한 분야인 지능형 교통 시스템과 연계된 자율주행 환경의 응급상황에서는 정보 전송은 매우 짧은 시간 안에 전송 및 처리돼야 하는 상황이기때문에 지연이라는 요인이 매우 민감하게 작용하는 조건의 대표적인 사례라고 볼 수 있다. 본 논문에서는 자율 주행 시 응급상황에서 SDN 아키텍처를 연구하고, 정보 흐름(셀 반경, 차량의 속도 및 SDN의 데이터 처리 시간의 변화)에 따라 차량이 관련정보를 요청해야 할 셀 계층과의 상관관계에 대하여 시뮬레이션을 통하여 분석을 진행하였다.