• Title/Summary/Keyword: FACTS devices

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Local Coordinative Reactive Power Control Method to Manage Voltage/Momentary Reactive Reserve (전압 및 순동무효예비력 확보를 위한 지역 변전소에서의 무효전력제어장치 협조방식 연구)

  • Lee, Geun-Joon;Yoon, Jong-Soo;Jang, Byung-Hoon;Jung, Sung-Won;Yoon, Sun-Ho;Lee, Hyun-Chul
    • Proceedings of the KIEE Conference
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    • 2008.07a
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    • pp.115-116
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    • 2008
  • This paper discusses local reactive power control method of substation which has FACTS controller(STATCOM) and other reactive power controllers. Not only The relation between entral control and local control method was discussed, but also local STATCOM control methd was done. With this results, revised coordinative control method which can implement system voltage sensitivity characteristics of each control devices. Also, this method can give proper solution for system status which requires momentary reactive reserve. This method is expected to be applied to control multiple substation reactive power devices which is combined with SCADA system.

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The Current Telecommunications Infrastructure in Ecuador is Ready to Start with the Implementation of IoT Applications?

  • Yepez, Johanna Fernandez;Kim, Yun Seon
    • Asia Pacific Journal of Business Review
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    • v.3 no.1
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    • pp.57-76
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    • 2018
  • The "Internet of things" (IoT) is becoming an increasingly growing topic of conversation, it is a new emergent technology that can be present in almost every field and application. It's a concept that not only has the potential to impact how people live but also how people work. Broadband Internet and Mobile Internet are becoming more widely available, the cost of the service is decreasing, more devices are being created with Wi-Fi capabilities and sensors built into them, technology costs are going down, and smartphone penetration is growing so fast. All of these facts are creating the best environment for the IoT applications. In a country like Ecuador, is important to have a previous analysis about the feasibility of the implementation of this new technology in order to know what are the challenges the country has to face, and also to not stay behind as the other countries in the region are advancing. Currently, this kind of analysis does not exist. The Internet of Things is an innovation where business and technology models in Ecuador are relatively unexplored. The current infrastructure deployed in Ecuador and the available devices in the market are the central facts to initiate with the research, which is a starting point to show if Ecuador is ready to this technology, and if is not ready what is missing. This study shows the current telecommunications status in Ecuador, and its strengths and weaknesses to start the deployment of Internet of Things. Besides, it also will show the most likely applications that can be easily adopted for the Ecuadorian market with its respective availability, affordability, and adaptability.

Optimal Relocating of Compensators for Real-Reactive Power Management in Distributed Systems

  • Chintam, Jagadeeswar Reddy;Geetha, V.;Mary, D.
    • Journal of Electrical Engineering and Technology
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    • v.13 no.6
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    • pp.2145-2157
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    • 2018
  • Congestion Management (CM) is an attractive research area in the electrical power transmission with the power compensation abilities. Reconfiguration and the Flexible Alternating Current Transmission Systems (FACTS) devices utilization relieve the congestion in transmission lines. The lack of optimal power (real and reactive) usage with the better transfer capability and minimum cost is still challenging issue in the CM. The prediction of suitable place for the energy resources to control the power flow is the major requirement for power handling scenario. This paper proposes the novel optimization principle to select the best location for the energy resources to achieve the real-reactive power compensation. The parameters estimation and the selection of values with the best fitness through the Symmetrical Distance Travelling Optimization (SDTO) algorithm establishes the proper controlling of optimal power flow in the transmission lines. The modified fitness function formulation based on the bus parameters, index estimation correspond to the optimal reactive power usage enhances the power transfer capability with the minimum cost. The comparative analysis between the proposed method with the existing power management techniques regarding the parameters of power loss, cost value, load power and energy loss confirms the effectiveness of proposed work in the distributed renewable energy systems.

A study on the application of power electronic devices for bulk power transmission (송전계통의 대용량 전력수송을 위한 신기술설비 적용방안 연구)

  • Chang, B.H.;Lee, W.K.;Kim, S.Y.;Won, Y.J.;Choo, J.B.
    • Proceedings of the KIEE Conference
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    • 2006.11a
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    • pp.69-71
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    • 2006
  • 국내 전력수요의 지속적인 증대로 인한 원거리의 발전단지의 대용량화에 따라 대용량 전력을 안정적으로 공급하기 위한 전력변환기술 수요가 증대될 것으로 전망된다. 또한, 규제완화와 민영화로 대표되는 전력 산업의 환경변화에 능동적으로 대응할 수 있는 새로운 형태의 대용량 전력수송 기술 개발과 지역계통간의 연계방안의 확립은 국가 전력 부문 경쟁력 강화의 핵심 요인으로 등장하고 있다. 최근 무효전력의 별도 보상이 필요없는 전력변환방식으로 전압형 인버터방식이 개발되어 상용화되고 있으며, 다양한 형태로 전력계통에 적용되고 있다. 본 논문에서는 신기술 FACTS 설비를 소개하고, VSC 전력변환 기술을 이용한 FACTS 설비의 전력계통 적용 시 계통운용 측면에서 필요한 특성을 분석하기 위한 계통해석 방안에 대해 기술하였다. 또한, 풍력단지 및 섬 지역에 대한 계통연계의 해외 주요 적용 사례를 분석하고, 국내계통에 대해 수도권-충남 지역간 북상조류 전송선로 보강 방안 검토사례를 발표하였다.

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A Fault Diagnosis Using System Matrix In Expert System (System matrix를 사용한 고장진단 전문가 시스템)

  • Sim, K.J.;Kim, K.J.;Ha, W.K.;Chu, J.B.;Oh, S.H.
    • Proceedings of the KIEE Conference
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    • 1989.07a
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    • pp.233-236
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    • 1989
  • This paper deals with the expert system using network configuration and input information composed of protective relays and tripped circuit breakers. This system has knowlegebase independent on network dimension because network representation consists of the type of the matrix. Therefore, the knowlege of network representation is simplified, the space of knowlege is reduced, the addition of facts to the knowlege is easy and the expansion of facts is possible. In this paper, the network representation is defined to system matrix. This expert system based on the system matrix diagnoses normal, abnormal operations of protective devices as well as possible fault sections. The brach and bound search technique is used: breadth first technique mixed with depth first technique of primitive PROLOG search technique. This system will be used for real time operations. This expert system obtaines the solution using the pattern matching in working memory without no listing approach for rule control. This paper is written in PROLOG, the A.I. language.

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A Study on Multi-objective Optimal Power Flow under Contingency using Differential Evolution

  • Mahdad, Belkacem;Srairi, Kamel
    • Journal of Electrical Engineering and Technology
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    • v.8 no.1
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    • pp.53-63
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    • 2013
  • To guide the decision making of the expert engineer specialized in power system operation and control; the practical OPF solution should take in consideration the critical situation due to severe loading conditions and fault in power system. Differential Evolution (DE) is one of the best Evolutionary Algorithms (EA) to solve real valued optimization problems. This paper presents simple Differential Evolution (DE) Optimization algorithm to solving multi objective optimal power flow (OPF) in the power system with shunt FACTS devices considering voltage deviation, power losses, and power flow branch. The proposed approach is examined and tested on the standard IEEE-30Bus power system test with different objective functions at critical situations. In addition, the non smooth cost function due to the effect of valve point has been considered within the second practical network test (13 generating units). The simulation results are compared with those by the other recent techniques. From the different case studies, it is observed that the results demonstrate the potential of the proposed approach and show clearly its effectiveness to solve practical OPF under contingent operation states.

The Design and Implementation of Controller for TCSC Simulator (시뮬레이터급 TCSC 제어기 설계 및 구현)

  • 전진홍;김광수;김지원;전영환
    • The Transactions of the Korean Institute of Power Electronics
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    • v.9 no.2
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    • pp.150-157
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    • 2004
  • In this paper, We present the design and implementation of controller hardware and software for TCSC(Thyristor Controlled Series Capacitor) simulator, which is a module of power system simulator It consists of many power system components, which are generator models, scale-downed transmission line modules, transformers, switches, FACTS(Flexible AC Transmission System) devices

The Design and Implementation of a Control System for TCSC in the KERI Analog Power Simulator

  • Jeon, Jin-Hong;Kim, Kwang-Su;Kim, Ji-Won;Oh, Tae-Kyoo
    • KIEE International Transactions on Power Engineering
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    • v.4A no.3
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    • pp.129-133
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    • 2004
  • This paper deals with the design and implementation of a TCSC (Thyristor Controlled Series Capacitor) simulator, which is a module for an analog type power system simulator. Principally, it presents configuration of controller hardware/software and its experimental results. An analog type power system simulator consists of numerous power system components, such as various types of generator models, scale-downed transmission line modules, transformer models, switches and FACTS (Flexible AC Transmission System) devices. It has been utilized for the verification of the control algorithm and the study of system characteristics analysis. This TCSC simulator is designed for 50% line compensation rate and considered for damping resister characteristic analysis. Its power rate is three phase 380V 20kVA. For hardware extendibility, its controller is designed with VMEBUS and its main CPU is TMS320C32 DSP (Digital Signal Processor). For real time control and communications, its controller is applied to the RTOS (Real Time Operation System) for multi-tasking. This RTOS is uC/OS-II. The experimental results of capacitive mode and inductive mode operations verify the fundamental operations of the TCSC.

A Study on Double Band Hysteresis Current Control based on 3-Level Inverter to reduce the harmonic component in output current of FACTS devices (FACTS 기기의 고조파 저감을 위한 이중밴드 히스테리시스 전류 제어에 관한 연구)

  • Choi, Won-Kyoung;Choi, Jeong-Hye;Kim, Bum-Sik;Shin, Eun-Chul;Lee, Sang-Bin;Yoo, Ji-Yoon
    • Proceedings of the KIEE Conference
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    • 2005.04a
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    • pp.180-182
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    • 2005
  • The current control using a conventional hysteresis controller of a STATCOM based on two level VSI (Voltage Source Inverter) has high switching frequency and variable modulation frequency. This will increase the switching loss. In addition, the current error is not strictly limited So, in this paper to reduce the switching frequency and to maintain the constant modulation frequency, a novel double band hysteresis current controller based on 3-level VSI is proposed. A conventional hysteresis current control and a novel hysteresis current control was tested with digital simulation and verified the advantage of the novel hysteresis current controller.

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A Development of Monitoring and Control System for Improved the Voltage Stability in the Power System (전력계통의 전압안정도향상을 위한 감시제어시스템 개발)

  • Lee, Hyun-Chul;Jeoung, Ki-Suk;Park, Ji-Ho;Baek, Young-Sik
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.62 no.4
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    • pp.437-443
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    • 2013
  • This paper was developed a monitoring and control system to use reactive power control algorithm. This algorithm could be improved voltage stability in power system. This method was controlled the voltage for stability improvement, effective usage of reactive power, and the increase of the power quality. PMS(Power Management System) has been calculate voltage sensitivity, and control reactive power compensation device. The voltage control was used to the FACTS, MSC/MSR(Mechanically Switched Capacitors/Reactors), and tap of transformer in power system. The reactive power devices in power system were control by voltage sensitivity ranking of each bus. Also, to secure momentary reactive power, it had been controlled as the rest of reactive power in the each bus. In here, reactive power has been MSC/MSR. The simulation result, First control was voltage control as fast response control of FACTS. Second control was voltage control through the necessary reactive power calculation as slow response control of MSR/MSR. Third control was secured momentary reactive reserve power. This control was method by cooperative control between FACTS and MSR/MSC. Therefore, the proposed algorithm was had been secured the suitable reactive reserve power in power system.