• 제목/요약/키워드: Frequency control reserve

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Determination of Secondary Reserve Requirement Through Interaction-dependent Clearance Between Ex-ante and Ex-post

  • Kim, Sun Kyo;Park, Joon-Hyung;Yoon, Yong Tae
    • Journal of Electrical Engineering and Technology
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    • v.9 no.1
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    • pp.71-79
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    • 2014
  • This paper discusses a method for the determination of frequency control reserve requirement with consideration of the interaction between ex-ante planning and real-time balancing. In proposed method, we consider the fact that the delivered energy for tertiary control reserve is determined based on required capacity for secondary control reserve and the expected amount of load errors. Uncertain load errors are derived by Brownian motion, an optimization method is suggested using a stochastic programming. In a short, we propose an interactive dependent method for determining secondary control reserve requirement based on the principle that it satisfies to minimize the total cost. As a result, this paper provides will analyze for an example model to demonstrate the capabilities of the method.

Reserve distribution to maximize the kinetic energy of a wind power plant (풍력단지의 최대 운동에너지 보유를 위한 예비력 분배)

  • Yoon, Gihwan;Lee, Jinsik;Lee, Hyewon;Kang, Yong Cheol
    • Proceedings of the KIEE Conference
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    • 2015.07a
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    • pp.179-180
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    • 2015
  • High wind penetration might cause the frequency stability problem because a wind power plant (WPP) is operating in a maximum power tracking mode to extract the maximal energy from wind and thus does not react to the system frequency variation. Therefore, the system operators encourage a WPP to participate in frequency control, which includes inertia/orl and primary control. The frequency support capability of a WPP depends on the amount of kinetic energy (KE) and reserve. This paper formulates an optimization problem to maximize KE while retaining the required reserve. The proposed optimization problem would allow wind generators (WGs) with a smaller wind speed to retaine more KE. The performance of the proposed optimization problem was investigated in a 100-MW WPP consisting of 20 units of 5-MW permanent magnet synchronous generators using an EMTP-RV simulator. The results show that the proposed optimization problem successfully improves the frequency nadir more than a conventional reserve allocation that distributes WGs proportional to the current output.

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Optimal Reserve Allocation to Maximize Kinetic Energy in a Wind Power Plant

  • Yoon, Gihwan;Lee, Hyewon;Lee, Jinsik;Yoon, Gi-Gab;Park, Jong Keun;Kang, Yong Cheol
    • Journal of Electrical Engineering and Technology
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    • v.10 no.5
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    • pp.1950-1957
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    • 2015
  • Modern wind generators (WGs) are forced or encouraged to participate in frequency control in the form of inertial and/or primary control to improve the frequency stability of power systems. To participate in primary control, WGs should perform deloaded operation that maintains reserve power using speed and/or pitch-angle control. This paper proposes an optimization formulation that allocates the required reserve to WGs to maximize the kinetic energy (KE) stored in a wind power plant (WPP). The proposed optimization formulation considers the rotor speed margin of each WG to the maximum speed limit, which is different from each other because of the wake effects in a WPP. As a result, the proposed formulation allows a WG with a lower rotor speed to retain more KE in the WPP. The performance of the proposed formulation was investigated in a 100-MW WPP consisting of 20 units of 5-MW permanent magnet synchronous generators using an EMTP-RV simulator. The results show that the proposed formulation retains the maximum amount of KE with the same reserve and successfully increases the frequency nadir in a power system by releasing the stored KE in a WPP in the case of a disturbance.

Operation Planning of Reserve in Microgrid Considering Market Participation and Energy Storage System

  • Lee, Si Young;Jin, Young Gyu;Kim, Sun Kyo;Yoon, Yong Tae
    • Journal of Electrical Engineering and Technology
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    • v.9 no.3
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    • pp.1089-1095
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    • 2014
  • Innumerable microgrids would be operated independently by individual operators in a future smart grid. This kind of decentralized power system requires entirely different operation scheme in the actual power system and electricity market operation. Especially, frequency regulation is very important for successive energy trade in this multi-microgrid circumstance. This paper presents an optimal energy and reserve market participation strategy and operation strategy of energy storage system (ESS) by a microgrid operator (MGO). For definite evaluation of the proposed strategy, we postulate that the MGO should participate in the Power Exchange for Frequency Control (PXFC) market, which was devised by Maria Ilic and her coworkers and is suitable to the decentralized operation circumstances. In particular, optimal reserve capacity of the frequency control market and optimal market participation ratio of ESS between frequency control market and energy market are derived theoretically and evaluated by simulations utilizing Nordic Pool Elspot price data.

System Frequency and Reserve Standards for Korean Wholesale Electricity Market (도매경쟁 전력시장에서의 주파수 및 예비력 신뢰도 기준(안))

  • Yoon, Jae-Young;Kim, Ho-Yong;Oh, Tae-Kyoo;Ok, Ki-Youl;Kim, Sung-Soo;Kim, Yong-Wan
    • Proceedings of the KIEE Conference
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    • 2001.11b
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    • pp.182-184
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    • 2001
  • This paper presents the application draft of system frequency and reserve criteria for Korean Wholesale Electricity Market. This application draft of system frequency and reserve criteria is based on frequecy, voltage control rules and technical rules for ancillary services agreements prepared by KEMA and the present conditions of KEPCO system operations and future directions.

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Development of Power System Health Algorithm (전력계통 건전성 지수 알고리즘 개발)

  • Lim, Jin-Taek;Lee, Sung-Hun;Lee, Yeon-Chan;Choi, Jae-Seok;Choi, Hong-Seok;Joo, Joon-Young
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.63 no.10
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    • pp.1328-1336
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    • 2014
  • This paper proposes Power System Health Index(PSHI) newly. The paper describes several kind of power system health indices based on two main categories, which are adequacy and security. In adequacy, four kinds of health indices of Frequency, Voltage, Reserve(Operating Reserve Power and Frequency Regulation Reserve Power) and Overload of lines and transformers are proposed. In security, four kinds of health indices of Voltage(154kV, 345kV and 765kV), Overload of lines and transformers, Power flow constraint among areas and SPS are proposed. All indices are mapped with three domains, which are indicated as Health, Margin and Risk, defined with expert interview. While domains of health, margin and risk is defined similar with the conventional well being analysis of power system. The criterion of the domains is proposed using an interview with expert operators and practical reliability codes in Korea. The several kinds of health index functions, which are linear ratio, piecewise linear ration and reverse ratio function etc. are developed in this paper. It will be expected that the developed health indices can help operators to control power system more successfully and also prevent power system from accident as like as black out in future because operator can make a decision immediately based on more easily visual information of system conditions from too much indices acquisition of complex power system.

A Study on the Requirement of Frequency Regulation Reserve in Electricity Market (전력시장에서 주파수조정예비력 요구에 관한 연구)

  • Oh, Chang-Soo;Lee, Kang-Wan
    • Proceedings of the KIEE Conference
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    • 2005.07a
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    • pp.298-300
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    • 2005
  • 전력계통의 주파수조정예비력(Frequency Regulation Control)은 부하 변동에 대응하여 규정된 주파수를 유지하고 안정된 전력계통 운영이 가능하도록 단시간 내에 응동할 수 있는 예비력이다. 본 논문은 우리나라 전력계통에 적합한 위와 같은 주파수조정예비력을 제시하고 전력산업 구조개편에 따라 분리된 발전사업자들이 전력시장에서 대부분의 주파수조정예비력을 담당하는 화력발전소 예비력 확보 방안을 연구 검토한 것이다.

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Modeling and Control of Integrated STATCOM-SMES System to Improve Power System Oscillations Damping

  • Molina, Marcelo G.;Mercado, Pedro E.
    • Journal of Electrical Engineering and Technology
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    • v.3 no.4
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    • pp.528-537
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    • 2008
  • Primary frequency control(PFC) has the ability to regulate short period random variations of frequency during normal operation conditions and also to respond rapidly to emergencies. However, during the past decade, numerous significant sized blackouts occurred worldwide that resulted in serious economic losses. Therefore, the conclusion has been reached that the ability of the current PFC to meet an emergency is poor, and security of power systems should be improved. An alternative to enhance the PFC and thus security is to store excessive amounts of energy during off-peak load periods in efficient energy storage systems for substituting the primary control reserve. In this sense, superconducting magnetic energy storage(SMES) in combination with a static synchronous compensator(STATCOM) is capable of supplying power systems with both active and reactive powers simultaneously and very rapidly, and thus is able to enhance the security dramatically. In this paper, a new concept of PFC based on incorporating a STATCOM-SMES is presented. A complete detailed model is proposed and a new control scheme is designed, comprising an enhanced frequency control scheme, and a fully decoupled current control strategy in d-q coordinates with a novel controller to prevent dc bus capacitors voltage drift/imbalance. The performance of the proposed control schemes is validated through digital simulation carried out using MATLAB/Simulink.

Gird Connected Modeling of Primary Frequency Recovery Reserve Provided by Electric Vehicle Considering Characteristics of Electric Vehicle Charge/Discharge Control Integrated Environment (전기자동차 충·방전제어 통합 환경을 고려한 전기차 1차 주파수 회복예비력의 계통연계형 모델링)

  • Kook, Kyung Soo;Lee, Jihoon;Moon, Jonghee;Choi, Wooyeong;Park, Kijun;Jang, Dongsik
    • KEPCO Journal on Electric Power and Energy
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    • v.7 no.2
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    • pp.249-254
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    • 2021
  • As the spreading speed of electric vehicles increases rapidly, those are expected to be able to use them as flexible resources in the power system beyond the concern for the supply of its charging power. Especially when the Renewable Energy sources (RES) which have no intrinsic control capability have replaced the synchronous generators more and more, the power system needs to secure the additional frequency control resources to ensure its stability. However, the feasibility of using electric vehicles as the frequency control resources should be analyzed from the perspective of the power system operation and it requires the existing simulation frameworks for the power system. Therefore, this paper proposes the grid connected modeling of the primary frequency control provided by electric vehicles which can be integrated into the existing power system model. In addition, the proposed model is implemented considering technical performances constrained by the characteristics of the Vehicle-Grid Integration (VGI) system so that the simulation results can be accepted by the power utilities operating the power system conservatively.

Resource Reservation Scheme for Handoff Calls in the CDMA Cellular System using Multiple Frequency Channels (다중 주파수 채널을 사용한는 CDMA 셀룰러 이동통신시스템에서 핸드오프호를 위한 예약 할당 방법)

  • 권수근;전형구;조경록
    • Journal of the Korean Institute of Telematics and Electronics S
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    • v.34S no.8
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    • pp.1-9
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    • 1997
  • Soft handoff provided in CDMA cellular system has much advantage such as better service quality, interference control and low call dropping probability. In this paepr, we propose an optimum resource reservationscheme for handoff calls in the CDMA cellular system to increase the soft handoff probability in handoff. In the proposed scheme, resources of each frquency channel are reserved for handoff according to the number of its neighbot cells serving the same frequency channel. A performance analysis shows that the soft handoff probability of the proposed scheme is higher than that of conventional scheme disregarding the condition of frquency assignment of neighbot cells, and that ever frequency channel served by neighbor cells should reserve more than one traffic channel for handoff to get good performance.

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