원문정보
Economic Analysis of Optical Communication Control System in High Voltage Magnetizer
초록
영어
Demand for high power motors is rapidly increasing as the 4th industry and convergence technology has recently emerged. In order to produce high-strength permanent magnets, the magnets used for magnetization have been increased from DC 300V in the 1970s to DC 2.5kV in the 2010s, Up to DC 10kV in the 2030s, It is expected that higher voltage will be used to magnetize. However, in the case of a magnetizer using an existing electric signal control device, it is necessary to use a control device with a high-voltage insulation function in case a high voltage used for magnetization is leaked to the control device. If a short circuit accident occurs, the controller must be shut down and serious problems such as excessive repair costs arise. In this study, a control system adopting optical communication method instead of electric signal control method is proposed to prevent leakage currents in high-voltage magnetizer. We design a transmitter(Tx) and a receiver(Rx) device for the optical communication control device and implemented a prototype connecting the optical cable. In order to demonstrate the utility of high-voltage magnetizer using the optical communication control device, we analyzed the initial cost and the yearly cost for the years to analyze the net present value. As a result, In the case of the low-voltage magnetizer, the electric signal control method cost less, As the operating voltage of the magnetizer becomes higher. It is confirmed that it takes less cost when the optical communication control device is used.
목차
1. 서론
2. 관련 연구
3. 착자기의 구조와 제어시스템의 발전
3.1 연대별 변화
3.2 영구자석
3.3 착자기의 구성
3.4 년대별 착자기 회로분석
4. 광통신 제어시스템의 도입 방안
4.1 광통신 제어시스템을 적용한 착자기의 구조
4.2 광모듈과 케이블
4.3 프로토타입의 설계 및 구현
4.4 프로토타입의 검증
5. 광통신 제어시스템의 경제성 분석
5.1 초기 비용의 추정
5.2 연도별 수리비용의 추정
5.3 순현가(NPV) 분석
6. 결론
References
