• 제목/요약/키워드: Local subsystem

검색결과 43건 처리시간 0.023초

지역 계통 구성과 Integer programming을 이용한 전압 및 무효전력 제어방안 연구 (A Study on Voltage and Reactive Power Control Methodology using Integer Programming and Local Subsystem)

  • 김태균;최윤혁;서상수;이병준
    • 전기학회논문지
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    • 제57권4호
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    • pp.543-550
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    • 2008
  • This paper proposes an voltage and reactive power control methodology, which is motivated towards implementation in the korea power system. The main voltage control devices are capacitor banks, reactor banks and LTC transformers. Effects of control devices are evaluated by local subsystem's cost computations. This local subsystem is decided by 'Tier' and 'Electrical distance' in the whole system. The control objective at present is to keep the voltage profile within constraints with minimum switching cost. A robust control strategy is proposed to make the control feasible and optimal for a set of power-flow cases that may occur important event from system. This studies conducted for IEEE 39-bus low and high voltage contingency cases indicate that the proposed control methodology is much more effective than PSS/E simulation tool in deciding switching of capacitor and reactor banks.

PC 통신 서비스 상호 접속 시스템(AICPS)의 통합 관리망 (AICPS Management Network Integration)

  • 홍용표;윤성재;이진
    • 한국전자파학회논문지
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    • 제10권1호
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    • pp.11-21
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    • 1999
  • AICPS(Advanced Information Communication System)는 다양한 서비스망들을 고속으로 지원하기 위하 여, 내부의 연동망인 고속스위칭패브릭(High Speed Switching Fabric: HSSF)을 중심으로 다양한 서비스 인터페이스 기능 모률이 접속되는 형태를 가진다. AICPS는 크게 정보 서비스 이용자들이 접속되는 서비스 이용자 접속 시스댐(User Access Network Subsystem: UANS) , 정보 제공 센터들을 위한 정보 제공 센터 접속 시스템(Information Delivery Network Subsystem : IONS)으로 구성되며, 여기에 시스템 관리를 위한 단위 시스템 운영관리장치(Local Operations and Management System : LOMS)가 접속된다. 본 고에서는 AICPS를 운영 관리하는 LOMS, LOMS를 AICPS의 HSSF와 연결하기 위한 관리망 접속 서브시스템 (Operational Network Ace랭 Subsystem: ONAS)의 구조에 대하여 설명하고, 이들 사이에 적용된 신뢰도 향상 알고리즘 및 전국 관리망 구축 방법에 대하여 기술한다.

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신경회로망 조정기를 이용한 상호 연결된 비선형 시스템의 비집중 제어 (Decentralized control of interconnected nonlinear systems using a neural coordinator)

  • 정희태;전기준
    • 전자공학회논문지B
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    • 제33B권6호
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    • pp.208-216
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    • 1996
  • This paper presents a decentralized control scheme for interconnected systems with unmodeled nonlinearities and interactions using a neural coordinator. The interactions due to the interconnection and the unmodeled nonlinearity associated with each subsystem are represented by the deviations from linearized states of decomposed subsystems. the decentralized controller is composed of local controllers and a neural coordinator. The local controller for each subsystem is derived from linearized local system parameters y linear optimal control theory. the neural cooridnator generates a corrective control signal to cancel the effect of deviation sthrough the backpropagation learning with the rrors obtained form the difference of the local system outputs and reference model outputs. the reference model consists of the part of local system without deviations. The effectiveness of the proposed control scheme is demonstrated by simulation studies.

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전력계토 안정화 제어를 위한 신경회로만 분산체어기의 구성에 관한 연구 (A Study on the Feedforward Neural Network Based Decentralized Controller for the Power System Stabilization)

  • 최면송;박영문
    • 대한전기학회논문지
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    • 제43권4호
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    • pp.543-552
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    • 1994
  • This paper presents a decentralized quadratic regulation architecture with feedforward neural networks for the control problem of complex systems. In this method, the decentralized technique was used to treat several simple subsystems instead of a full complex system in order to reduce training time of neural networks, and the neural networks' nonlinear mapping ability is exploited to handle the nonlinear interaction variables between subsystems. The decentralized regulating architecture is composed of local neuro-controllers, local neuro-identifiers and an overall interaction neuro-identifier. With the interaction neuro-identifier that catches interaction characteristics, a local neuro-identifier is trained to simulate a subsystem dynamics. A local neuro-controller is trained to learn how to control the subsystem by using generalized Backprogation Through Time(BTT) algorithm. The proposed neural network based decentralized regulating scheme is applied in the power System Stabilization(PSS) control problem for an imterconnected power system, and compared with that by a conventional centralized LQ regulator for the power system.

대규모 선형 시스템에서의 비집중 반복 학습제어 (Decentralized Iterative Learning Control in Large Scale Linear Dynamic Systems)

  • 황중환;;오상록
    • 대한전기학회논문지
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    • 제39권10호
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    • pp.1098-1107
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    • 1990
  • Decentralized iterative learning control methods are presented for a class of large scale interconnected linear dynamic systems, in which iterative learning controller in each subsystem operates on its local subsystem exclusively with no exchange of information between subsystems. Suffcient conditions for convergence of the algorithms are given and numerical examples are illustrated to show the validity of the algorithms. In particular, the algorithms are useful for the systems having large uncertainty of inter-connected terms.

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분산형 기준모델 적응 제어기 구성에 관한 연구 (On the study of decentralized model reference adaptive controller design)

  • 장석주;김국헌;양흥석
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1987년도 한국자동제어학술회의논문집; 한국과학기술대학, 충남; 16-17 Oct. 1987
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    • pp.193-197
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    • 1987
  • Decentralized model reference adaptive controller is used to control interconnected system. Influences caused by interactions between each subsystem are regarded as unmodeled dynamics or disturbances, thus decentralized adaptive controller is designed using MRAC algorithms which guarantees robustness. To expand the stability regions of over all system and to improve control performances, higher level controller is introduced to adjust the control factors such as filter band, size of deadzone or maximum norm of parameter. Local controllers for each subsystem are realized in real time and higher level controller has an ability of detecting the instability phenomena and adjusts the local controller by analysis of power spectrum or square sum of tracking errors.

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슬라이딩 모드를 이용한 대규모 계통의 제어 (The Control of Large Scale System by Sliding Mode)

  • 천희영;박귀태;곽군평;김동식;임형용
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1987년도 전기.전자공학 학술대회 논문집(I)
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    • pp.190-194
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    • 1987
  • This paper describes a new method for control of large-scale system by sliding mode. The concepts of control to large-scale system on the basis of VSS(Variable Structure System) control theory are used to decompose a large control problem into a two-level algorithm such that each subsystem is stabilized with local discontinuous controllers and higher level corrective control is designed to take into account the effect of interaction among the subsystems. In this paper, we show that each subsystem is controlled with repect to local continuous and higher level corrective control. This algorithm can be easily applied to multi-variable control system and obtained a continuous control in comparison With variable structure control systems. Two numerical examples are discussed as illustrations.

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초음파 및 적외선 센서 기반 자율 이동 로봇의 견실한 실시간 제어 (Robust Real-time Control of Autonomous Mobile Robot Based on Ultrasonic and Infrared sensors)

  • 노연판쿠웨트;한성현
    • 한국생산제조학회지
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    • 제19권1호
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    • pp.145-155
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    • 2010
  • This paper presents a new approach to obstacle avoidance for mobile robot in unknown or partially unknown environments. The method combines two navigation subsystems: low level and high level. The low level subsystem takes part in the control of linear, angular velocities using a multivariable PI controller, and the nonlinear position control. The high level subsystem uses ultrasonic and IR sensors to detect the unknown obstacle include static and dynamic obstacle. This approach provides both obstacle avoidance and target-following behaviors and uses only the local information for decision making for the next action. Also, we propose a new algorithm for the identification and solution of the local minima situation during the robot's traversal using the set of fuzzy rules. The system has been successfully demonstrated by simulations and experiments.

밀리미터파 대역 국부발진 시스템 설계연구 (A Design Study of the Local Oscillator System for Millimeter Wave Band)

  • 이창훈;김광동;한석태;정문희;김효령;제도흥;김태성
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2003년도 통신소사이어티 추계학술대회논문집
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    • pp.77-80
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    • 2003
  • We design the local oscillator system of the 100 GHz band radio receiving system for a cosmic radio observation. We use the YIG oscillator with digital driver which is the main oscillator. This oscillator has a good frequency and phase stability at some temperature variation, and the easy computer aided control characteristics. This total system designed to two subsystem, first is the oscillator system include YIG oscillator, tripler, harmonic mixer and triplexer etc., second is the PLL system to supply the precise and stable local oscillator frequency to mixer. The proposed local oscillator system in this paper can be use a single or multi pixel receiver because this system can be lock the local oscillator frequency automatically using PC.

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DISTRIBUTED CONTROL SYSTEM FOR KSTAR ICRF HEATING

  • Wang, Son-Jong;Kwak, Jong-Gu;Bae, Young-Dug;Kim, Sung-Kyu;Hwang, Churl-Kew
    • Nuclear Engineering and Technology
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    • 제41권6호
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    • pp.807-812
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    • 2009
  • An ICRF discharge cleaning and a fast wave electron heating experiment were performed. For automated operation and providing the diagnostics of the ICRF system, the ICRF local network was designed and implemented. This internal network provides monitoring, RF protection, remote control, and RF diagnostics. All the functions of the control system were realized by customized DSP units. The DSP units were tied by a local network in parallel. Owing to the distributed feature of the control system, the ICRF local control system is quite flexible to maintain. Developing the subsystem is a more effective approach compared to developing a large controller that governs the entire system. During the first experimental campaign of the KSTAR tokamak, the control system operated as expected without any major problems that would affect the tokamak operation. The transmitter was protected from harmful over-voltage events through reliable operation of the system.