系統連系 分散電源에 使用되는 太陽光 發電用 인버터의 開發
- Alternative Title
- 계통연계 분산전원에 사용되는 태양광 발전용 인버터의 개발
- Abstract
- This paper relates to grid-connected single-phase inverter
system, the proposed system is a gate pulse signal was added to
the active auxiliary resonant circuit in the bridge arm of a
conventional grid-connected single-phase half-bridge inverter,
main switch is modulated by the SPWM method by configuring
so that the, take a feature that can control the multi-phase
alternating current can be used in the batch phase inverter.
And active by the secondary resonance also work during the
snubber circuit a dead time period, soft switching is possible
because it actually turns a basic switch in the on state-off and
resonant operation after turning the other main switch-which was
applied to the whole of the gate signal have the characteristic.
Further, when the conventional program is shorter than the
width of the gate pulse signal active auxiliary resonant snubber
operation time in the operation in the hard switching to occur
even if the H, L is the reverse of the gate pulse signal.
This power supply is in reversal of the power supply circuit
is a short circuit may possibly be damaged since. To prevent
this, this paper has set the ARCP operation time and modulation
rate settings and processes the pulse of the gate pulse signal reversal was the program not to occur. 114
Further, as the main switch is in the off state to the time
when the other switch is turned on, and the dead time is a
hard switching method in case of the conventional method to
sequence the switching pattern 1.5[μs], While for setting the
dead time of the soft switching system with 2.0[ms], For this paper
the sequence switching patterns applied to the soft-switching
method is 4.0[μs] because the pulse width of the hard-switched
at the same modulation rate and time to get a high density to
suppress the resonant inductor current as a whole small effect
of improving the efficiency have.
Running a soft switching operation by the switching pattern
sequence scheme applied to the paper, it is possible to suppress
the surge voltage and the surge current, the generation of
noise of the device is reduced as compared to the effect of the hard switching method.
- Author(s)
- 김정도
- Issued Date
- 2017
- Awarded Date
- 2017. 2
- Type
- Dissertation
- Keyword
- SPWM 인버터시스템
- Publisher
- 부경대학교 대학원
- URI
- https://repository.pknu.ac.kr:8443/handle/2021.oak/13623
http://pknu.dcollection.net/jsp/common/DcLoOrgPer.jsp?sItemId=000002331460
- Affiliation
- 부경대학교 대학원
- Department
- 대학원 전기공학과
- Advisor
- 박한석
- Table Of Contents
- 제 Ⅰ 장 서 론 1
제 Ⅱ 장 일반적인 태양광 발전시스템 4
2.1 태양광 발전시스템 4
2.2 계통연계형 인버터 8
2.3 고주파 스위칭 PWM 전력변환 기술 13
2.4 영전압 스위칭(ZVS)과 영전류 스위칭(ZCS)의 구조 15
2.5 풀-브리지 인버터의 회로구성 및 동작원리 21
제 Ⅲ 장 제안한 계통 연계 분산 전원에 사용되는 태양광 발전용 SPWM 인버터 26
3.1 정류 펄스 회생형 액티브 보조 공진 정류 브리지 스너버 회로의 구성 26
3.2 제안한 능동 보조 공진 스너버 회로의 동작 모드 분석 29
3.3 제안한 전류 펄스 회생형 능동 보조 공진 스너버 회로 파라미터 설계 58
3.4 저역 통과 필터 회로 설계 67
3.5 SPWM 제어방식 68
제 Ⅳ 장 실험 결과 및 검토 72
4.1 제안한 태양광 발전용 SPWM 인버터 시스템 72
4.2 제안한 SPWM 인버터 시스템의 시뮬레이션 및 실험 결과 84
제 Ⅴ 장 결 론 106
참 고 문 헌 108
- Degree
- Doctor
-
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