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      • KCI등재

        직접 토크 제어를 이용한 릴럭턴스 동기 전동기의 최대 효율제어

        김남훈,김동희,백원식,노채균,김민회 전력전자학회 2003 전력전자학회 논문지 Vol.8 No.3

        본 논문은 직접 토오크 제어 (Direct Torque control, DTC) 를 이용한 릴럭턴스 동기전동기 (Reluctance Synchronous Motor, RSM) 의 최대 효율 제어에 관한 연구이다. 릴럭턴스 동기전동기의 등가모델 해석에 있어서 철손의 영향을 고려하여 이론적으로 분석하였으며, 최대효율제어를 위하여 토크 전류와 여자전류 사이의 최적 각을 유도하였다. 릴럭턴스 동기전동기의 경우는 자속이 전류에 비례하므로 유도전동기와는 달리 자속레벨을 제어하면서 토오크의 동특성을 유지할 수 있다는 특징을 가지고 있으며, 제시된 연구에서는 릴럭턴스 동기전동기의 이러한 특징을 적용하여 직접 토오크 제어의 장점인 빠른 토오크 응답특성을 유지하면서 최대 효율 제어가 이루어지도록 한다. d/q 릴럭턴스 비가 2.57인 1.0 Kw 릴럭턴스 동기전동기를 이용하여 실험을 통해 제안된 방법들의 정당성을 입증하였다. This paper presents an implementation of direct torque control (DTC) of Reluctance Synchronous Motor (RSM) with an efficiency optimization. The equipment circuit in Reluctance Synchronous Motor which consider with iron losses is theoretically analyzed and the optimal current ration between torque current and exiting current analytically derived to drive RSM at maximum efficiency. For RSM, torque dynamics can be maintained even with controlling the flux level because a torque is directly proportional to the stator current unlike induction motor. The experimental results are presented to validate the applicability of the proposed method. The developed control system show high efficiency features with 1.0 Kw RSM having 2.57 ratio of d/q reluctance.

      • KCI등재

        A Simplified Torque Ripple Reduction using the Current Shaping of the Flux Switched Reluctance Motor

        Heon-Hyeong Lee,Qi Wang,Se-Joo Kim,Woongchul Choi,Geun-Ho Lee 한국자기학회 2012 Journal of Magnetics Vol.17 No.3

        Recently, applications of the reluctance torque motor have been quite limited due to their inherent limitation of noise and vibration and thus, researches on the reluctance motor have been limited as well. However, with the tremendous increase in the cost of rare earth material magnets, studies of the reluctance torque motor are being conducted more and more. In principle, reluctance torque is generated when the inductance is changed. Therefore, in order to generate continuous torque in the switched reluctance motor, it is necessary to figure out the exact inductance level corresponding to the rotor position and the current level to be applied in that rotor position, respectively. If the current level or the rotor position is not accurately determined, then the generated reluctance torque becomes unstable and undesirable torque ripples prevail to eventually cause noise and vibrations. In this research, a flux switched reluctance motor (FSRM), which is classified into the switched reluctance motor (SRM), wasstudied. A methodology using the current shaping control according to the rotor position was proposed. Based on the proposed methodology, the optimal current waveform and the torque distribution function for the FSRM to minimize torque ripple was established and demonstrated in this paper.

      • Performance Improvement of Ferrite-Assisted Synchronous Reluctance Machines Using Asymmetrical Rotor Configurations

        Zhao, Wenliang,Chen, Dezhi,Lipo, Thomas A.,Kwon, Byung-Il IEEE 2015 IEEE transactions on magnetics Vol.51 No.11

        <P>This paper proposes novel ferrite-assisted synchronous reluctance machines (FA-SynRMs) having the merit of highly improved machine performance including torque, efficiency, and power factor. The particular superiority of the proposed FA-SynRMs is the utilization of an asymmetrical rotor configuration that contributes to the full use of torque components by allowing the magnetic and reluctance torques to reach their maximum values near or at the same current phase angles. To provide visible insights into the contribution, a frozen permeability method is utilized to separate the torque into the reluctance torque and the magnetic torque based on a 2-D finite-element method by the aid of JMAG-Designer. For highlighting the advantages of the proposed models, a conventional FA-SynRM with symmetrical rotor configurations is adopted for comparison under the same operating conditions. As a result, it is demonstrated that the proposed design is effective in improving the performance of FA-SynRMs.</P>

      • KCI등재

        적응제어기를 이용한 Switched Reluctance Motor의 속도제어

        김성수(Sung-Soo Kim),김민석(Min-Seok Kim),이종우(Jong-Woo Lee) 대한전기학회 2011 전기학회논문지 P Vol.60 No.3

        Currently, switched reluctance motors are studied to increase energy efficient. The switched reluctance motor is possible to control higher speed and torque than the induction motors and composition is simple. Current and rotor speed are considered to install the switched reluctance motor. In this paper, Simulink model of the switched reluctance motor is suggested and the adaptive controller is applied to the model for the speed control. Asymmetry converter including the IGBT is concerned with real-time control and the speed of switched reluctance motor is controlled by installing adaptive controller.

      • SCIESCOPUSKCI등재

        Magnetic Saturation Effect on the Rotor Core of Synchronous Reluctance Motor

        Ki-Chan Kim 대한전기학회 2011 Journal of Electrical Engineering & Technology Vol.6 No.5

        This paper presents a study on the design parameters that consider the magnetic saturation effect in a rotor core of a synchronous reluctance motor. Two important design parameters in a rotor are selected to analyze the saturation effect of a synchronous reluctance motor, particularly in a rotor core. The thickness of the main segment, which is the main path of the d-axis flux, and the end rip, which affects the q-axis flux, are analyzed using the d-axis and q-axis inductances. Moreover, the characteristics of torque and torque ripple when magnetic saturation takes place are analyzed. The saturation effect is verified by comparing the reluctance torque between the experiment and FEM simulation.

      • SCIESCOPUSKCI등재

        Magnetic Saturation Effect on the Rotor Core of Synchronous Reluctance Motor

        Kim, Ki-Chan The Korean Institute of Electrical Engineers 2011 Journal of Electrical Engineering & Technology Vol.6 No.5

        This paper presents a study on the design parameters that consider the magnetic saturation effect in a rotor core of a synchronous reluctance motor. Two important design parameters in a rotor are selected to analyze the saturation effect of a synchronous reluctance motor, particularly in a rotor core. The thickness of the main segment, which is the main path of the d-axis flux, and the end rip, which affects the q-axis flux, are analyzed using the d-axis and q-axis inductances. Moreover, the characteristics of torque and torque ripple when magnetic saturation takes place are analyzed. The saturation effect is verified by comparing the reluctance torque between the experiment and FEM simulation.

      • KCI등재

        저가형 아날로그 구동장치를 이용한 Switched Reluctance Motor의 스위칭 Duty 가변제어

        윤용호,Yoon, Yongho 한국인터넷방송통신학회 2021 한국인터넷방송통신학회 논문지 Vol.21 No.3

        산업응용에서 정확한 속도 및 전류 제어를 위해 SRM (Switched Reluctance Motor)은 특성상 드라이브에서 고정자의 상 여자와 회전자의 위치를 동기화시키는 것이 매우 중요하다. 따라서 적절한 스위칭 동작을 위해 정확한 회전자 위치정보는 필수적이기에 위치 센서가 필요하다. 회전자 위치에 따라 적정 고정자 권선을 여자 시켜 회전력을 발생시키기고 속도와 위치정보를 이용하여 전동기를 제어하기 위해서 일반적으로 엔코더 (Encoder), 레졸버 (Resolver) 같은 위치센서를 사용한다. 그러나 이러한 센서들은 1) 가격적 측면에서 센서들의 가격이 상당히 크기 때문에 전체 시스템 비용에서 전동기 시스템이 차지하는 비율이 높다. 또한 2) 기계적 측면에서 엔코더나 레졸버와 같은 위치센서들을 고정자측에 부착하여 크기 및 무게를 증가시키고 있다. 결론적으로 SRM을 구동하기 위해서는 회전자 위치정보에 따른 제어가 기본적으로 이루어져야 하며 적용 분야를 고려해서 환경에 따른 SRM 구동 시스템을 설계하는 것이 중요하다. 따라서 본 논문에서는 기존의 엔코더 (Encoder), 레졸버 (Resolver)를 사용하는 일반적인 제어시스템에서 벗어나서 저가형 아날로그 구동장치를 설계하여 스위칭 Duty 가변 제어를 통한 SRM의 구동 및 제어 특성을 연구하고자 한다. For accurate speed and current control in industrial applications, SRM (Switched Reluctance Motor) is very important to synchronize the stator phase excitation and rotor position in the drive due to its nature. In general, position sensors such as encoder and resolver are used to generate rotational force by exciting the stator winding according to the rotor position and to control the motor by using speed and position information. However, for these sensors, 1) the cost of the sensors is quite large in terms of price, so the proportion of the motor system to the total system cost is high. 2) In terms of mechanical, position sensors such as encoders and resolvers are attached to the stator to increase the size and weight. In conclusion, in order to drive the SRM, control based on the rotor position information should be basically performed, and it is important to design the SRM driving system according to the environment in consideration of the application field. Therefore, in this paper, we intend to study the driving and control characteristics of SRM through variable switching duty control by designing a low-cost analog driving device, deviating from the general control system using the conventional encoder and resolver.

      • KCI등재

        Magnetic Saturation Effect on the Rotor Core of Synchronous Reluctance Motor

        김기찬 대한전기학회 2011 Journal of Electrical Engineering & Technology Vol.6 No.5

        This paper presents a study on the design parameters that consider the magnetic saturation effect in a rotor core of a synchronous reluctance motor. Two important design parameters in a rotor are selected to analyze the saturation effect of a synchronous reluctance motor, particularly in a rotor core. The thickness of the main segment, which is the main path of the d-axis flux, and the end rip, which affects the q-axis flux, are analyzed using the d-axis and q-axis inductances. Moreover, the characteristics of torque and torque ripple when magnetic saturation takes place are analyzed. The saturation effect is verified by comparing the reluctance torque between the experiment and FEM simulation.

      • KCI등재

        IPMSM의 쇄교자속 계산을 통한 릴럭턴스 토크 산정

        조규원(Gyu-Won Cho),김철민(Cheol-Min Kim),김규탁(Gyu-Tak Kim) 대한전기학회 2013 전기학회논문지 Vol.62 No.2

        Classically, reluctance torque of IPMSM(Interior Permanent Magnet Synchronous Motor) by using inductance according to current phase angle generates an error. This error is affected by total torque. From current phase angle 0° to large errors will occur, because reluctance torque include current phase angle. But, reluctance torque from steady-state voltage equation of IPMSM is represented by linkage flux. So, reluctance torque is unrelated to the current phase angle formula can be derived. In this paper, operating torque was analyzed by d, q-axis linkage flux of IPMSM and reluctance torque to perform calculations reduced the error of the total torque calculation.

      • KCI등재

        기계언어를 통한 Switched Reluctance Motor(SRM)의 Modeling과 특성

        윤용호,Yoon, Yongho 한국인터넷방송통신학회 2021 한국인터넷방송통신학회 논문지 Vol.21 No.4

        영구자석 동기전동기는 높은 출력밀도와 효율 확보가 가능하나, 제작에 필요한 재료의 가격이 비싸고 설계가 유도전동기 대비 다소 어려운 문제점을 가지고 있다. 따라서 효율 및 유지보수 편의성 등이 모두 고려된 최적의 전동기 개발 및 관련 제어연구가 필요한 실정이다. 뿐만 아니라, 실질적인 전동기에 의한 구동은 좁은 정격영역에서의 최고효율의 증대 요구와 전체 전기구동 영역에서의 평균 효율 증대, 평균 출력의 증대 요구로 이어지고 있다. 이러한 움직임에 의해 영구자석이 필요 없는 릴럭턴스 전동기 (Reluctance Motor)가 하나의 대안으로 검토되고 있다. 본 논문에서는 희토류 영구자석 전동기를 대체할 수 있는 미래기술 개발과, 희토류 저감형 전동기와 탈 희토류 전동기의 기술 선점을 요구하는 시대적 이슈 (Issue)에 맞춰 영구자석이 필요 없는 스위치드 릴럭턴스 전동기 (Switched Reluvtance Motor, SRM)에 대해 기계언어(C 언어)를 통한 modeling과 그에 따른 SRM의 특성을 연구하고자 한다. Permanent magnet synchronous motors can secure high power density and efficiency, but have problems in that the materials required for manufacturing are expensive and design is somewhat more difficult than induction motors. Therefore, it is necessary to develop an optimal motor that considers both efficiency and maintenance convenience and related control research. In addition, driving by a practical motor leads to a request to increase the highest efficiency in a narrow rated range, an increase in average efficiency in the entire electric driving range, and an increase in average output. Due to this movement, a reluctance motor that does not require a permanent magnet is being considered as an alternative. In this paper, in line with the issues of the times that require the development of future technology that can replace rare earth permanent magnet motors and the technological preemption of rare earth reduction motors and rare earth motors, switched reluctance motors without permanent magnet For motor, SRM), modeling through machine language (C language) and the characteristics of SRM accordingly are to be studied.

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