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정대원(Dae-Won Chung) 대한전기학회 2012 전기학회논문지 Vol.61 No.12
This paper is to present a new method of cogging torque reduction for axial flux PM machines of multiple rotor surface mounted magnets. In order to start softly and to run a power generator even the case of weak wind power, reduction of cogging torque is one of the most important issues for a small wind turbine, Cogging torque is an inherent characteristic of PM machines and is caused by the geometry shape of the machine. Several methods have been already applied for reducing the cogging torque of conventional radial flux PM machines. Even though some of these techniques can be also applied to axial flux machines, manufacturing cost is especially higher due to the unique construction of the axial flux machine stator. Consequently, a simpler and low cost method is proposed to apply on axial flux PM machines. This new method is actually applied to a generator of 1.0kW, 16-poles axial flux surface magnet disc type machine with double-rotor-single-stator for small wind turbine. Design optimization of the adjacent magnet pole-arc which results in minimum cogging torque as well as assessment of the effect on the maximum available torque using 3D Finite Element Analysis (FEA) is investigated in this design. Although the design improvement is intended for small wind turbines, it is also applicable to larger wind turbines.
Short-Term Load Forecast in Microgrids using Artificial Neural Networks
Dae-Won Chung(정대원),Seung-Hak Yang(양승학),Yong-Min You(유용민),Keun-Young Yoon(윤근영) 대한전기학회 2017 전기학회논문지 Vol.66 No.4
This paper presents an artificial neural network (ANN) based model with a back-propagation algorithm for short-term load forecasting in microgrid power systems. Owing to the significant weather factors for such purpose, relevant input variables were selected in order to improve the forecasting accuracy. As remarked above, forecasting is more complex in a microgrid because of the increased variability of disaggregated load curves. Accurate forecasting in a microgrid will depend on the variables employed and the way they are presented to the ANN. This study also shows numerically that there is a close relationship between forecast errors and the number of training patterns used, and so it is necessary to carefully select the training data to be employed with the system. Finally, this work demonstrates that the concept of load forecasting and the ANN tools employed are also applicable to the microgrid domain with very good results, showing that small errors of Mean Absolute Percentage Error (MAPE) around 3% are achievable.
지구저궤도위성의 우주공간 확보를 위한 ITU 요구사항 분석
정대원(Dae-Won Chung),김희섭(Hee-Seob Kim),김응현(Eung-Hyun Kim),김규선(Gyu-Sun Kim),최해진(Hae-Jin Choi) 한국항공우주연구원 2007 항공우주기술 Vol.6 No.2
지구저궤도위성을 우주에서 운영하기 위해서는 국제전기통신연합에서 정의한 기술적인 요구사항들과 행정적인 절차를 위성 개발에 반영해야 한다. 지켜야할 주요 기술 요구사항들은 주파수 스펙트럼에 따라서 사용 목적, 대역폭, 전파 세기 및 타 위성망에 대한 신규 위성망의 기술적인 제한 사항들이다. 이러한 국제전기통신연합의 요구사항들은 시스템 요구사항과 위성 대 지상국 접속 요구사항으로 반영되어서 설계된다. 우주에서의 위성망의 사용에 대한 권리와 보호를 가지기 위해서는 국제주파수등록원부에 등재되어야 하며, 이를 위한 절차를 준수해야 한다. 신규 위성망을 등록하기 위해서는 이의 제기 국가와 조정이 필요하다. 또한, 조정에 대한 기준, 기법 등이 필요하다. In order to operate Low Earth Orbit(LFO) satellite on space, technical requirements and administrative procedure which are defined by the International Telecommunication Union(ITU) should be followed on satellite development. Main technical requirements to follow are purpose of use, bandwidth, Radio Frequency(RF) intensity, and constraints on new satellite network about existing satellite networks according to frequency spectrum. Such ITU's requirements are reflected and designed on system specification and space to ground interlace control document. In order to have a right and protection about using the satellite network on space, the satellite network has to be registered on Master International Frequency Register(MIFR) and procedure for this has to be followed. Coordination with countries raising objection is needed in order to register. And reference and method for coordination are also needed.