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具倍流整流之隔離雙倍降壓轉換器設計 = = Isolated Doubl...
~
謝仁祥
具倍流整流之隔離雙倍降壓轉換器設計 = = Isolated Double Step-Down DC-DC Converter with Current-Doubler Rectification /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
具倍流整流之隔離雙倍降壓轉換器設計 =/ 謝仁祥.
Reminder of title:
Isolated Double Step-Down DC-DC Converter with Current-Doubler Rectification /
remainder title:
Isolated Double Step-Down DC-DC Converter with Current-Doubler Rectification.
Author:
謝仁祥
Published:
雲林縣 :國立虎尾科技大學 , : 民113.07.,
Description:
[9], 53面 :圖, 表 ; : 30公分.;
Notes:
指導教授: 劉煥彩.
Subject:
high step-down. -
Online resource:
電子資源
具倍流整流之隔離雙倍降壓轉換器設計 = = Isolated Double Step-Down DC-DC Converter with Current-Doubler Rectification /
謝仁祥
具倍流整流之隔離雙倍降壓轉換器設計 =
Isolated Double Step-Down DC-DC Converter with Current-Doubler Rectification /Isolated Double Step-Down DC-DC Converter with Current-Doubler Rectification.謝仁祥. - 初版. - 雲林縣 :國立虎尾科技大學 ,民113.07. - [9], 53面 :圖, 表 ;30公分.
指導教授: 劉煥彩.
碩士論文--國立虎尾科技大學電機工程系碩士班.
含參考書目.
相較於傳統全橋轉換器,隔離雙倍降壓轉換器可以達到更高的降壓倍率,但在輸出功率維持不變的情況下,由於進入變壓器一次側的電壓降低,將導致流入變壓器的電流上升,使一次側開關電流應力提高,並增加一次側環路損失。為解決上述問題,本論文提出架構由雙倍降壓和倍流整流技術組成,透過倍流整流技術減少變壓器二次側輸出電流峰值,達到減少一次側環路電流,且倍流整流電路的二極體數目為橋式整流電路的一半,可減少二極體導通造成的損失。 研究主要有兩個目標,首先透過一次側電容達成雙倍降壓,同時開關元件具低電壓應力;接著二次側採用倍流整流技術,減少變壓器環路損失與降低輸出負載的連波電流,達到一次側低電流應力,同時整流二極體上皆達到零電壓切換,降低切換損失,進而提升轉換器效率。本論文透過模擬和實驗結果的綜合驗證,證實高降壓轉換器的可行性,實際量測負載範圍內的效率最高為93.4%,突顯本論文架構的潛力。.
(平裝)Subjects--Topical Terms:
1451753
high step-down.
具倍流整流之隔離雙倍降壓轉換器設計 = = Isolated Double Step-Down DC-DC Converter with Current-Doubler Rectification /
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具倍流整流之隔離雙倍降壓轉換器設計 =
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Isolated Double Step-Down DC-DC Converter with Current-Doubler Rectification /
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謝仁祥.
246
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Isolated Double Step-Down DC-DC Converter with Current-Doubler Rectification.
250
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初版.
260
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雲林縣 :
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國立虎尾科技大學 ,
$c
民113.07.
300
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[9], 53面 :
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圖, 表 ;
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30公分.
500
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指導教授: 劉煥彩.
500
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學年度: 112.
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碩士論文--國立虎尾科技大學電機工程系碩士班.
504
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含參考書目.
520
3
$a
相較於傳統全橋轉換器,隔離雙倍降壓轉換器可以達到更高的降壓倍率,但在輸出功率維持不變的情況下,由於進入變壓器一次側的電壓降低,將導致流入變壓器的電流上升,使一次側開關電流應力提高,並增加一次側環路損失。為解決上述問題,本論文提出架構由雙倍降壓和倍流整流技術組成,透過倍流整流技術減少變壓器二次側輸出電流峰值,達到減少一次側環路電流,且倍流整流電路的二極體數目為橋式整流電路的一半,可減少二極體導通造成的損失。 研究主要有兩個目標,首先透過一次側電容達成雙倍降壓,同時開關元件具低電壓應力;接著二次側採用倍流整流技術,減少變壓器環路損失與降低輸出負載的連波電流,達到一次側低電流應力,同時整流二極體上皆達到零電壓切換,降低切換損失,進而提升轉換器效率。本論文透過模擬和實驗結果的綜合驗證,證實高降壓轉換器的可行性,實際量測負載範圍內的效率最高為93.4%,突顯本論文架構的潛力。.
520
3
$a
Isolated double step-down converter can achieve a higher step-down ratio which compared to traditional Full-Bridge converter. Because maintaining the same output power, the primary circulating current will be increased while reducing input voltage to the primary side of transformer. This results is increasing current stress on the primary side switches and the line loss on the primary side. To solve these issues, this paper proposes a structure composed of double step-down and current-doubler rectifier. By utilizing the current-doubler rectifier, the peak current on the secondary side of transformer is reduced, thereby decreasing the current on primary-side. Additionally, the current-doubler rectifier circuit only requires half the amount of diodes compared to the bridge rectifier circuit, it can decrease the losses caused by diode. The study has two main objectives: first, to achieve step-down through primary-side capacitor energy, while reducing voltage stress of switches; and second, proposed topology adopt current-doubler rectifier on the secondary side which can reduce the secondary circulating currents and ripple voltage, while achieving low current stress on primary side and zero-voltage switching on the rectifier diodes which can promote the conversion efficiency. The feasibility of the proposed topologies is confirmed through comprehensive verification using simulation and experimental results. According to actual measurements within the load range, the highest efficiency of proposed circuit is 93.4%, which highlights the significant potential of the proposed topology..
563
$a
(平裝)
650
# 4
$a
high step-down.
$3
1451753
650
# 4
$a
zero-voltage switch.
$3
1451752
650
# 4
$a
low current stress.
$3
1451751
650
# 4
$a
low voltage stress.
$3
1451750
650
# 4
$a
current-doubler rectifier.
$3
1451749
650
# 4
$a
double step-down.
$3
1451748
650
# 4
$a
高降壓.
$3
1418214
650
# 4
$a
零電壓切壓.
$3
1451747
650
# 4
$a
低電流應力.
$3
1451746
650
# 4
$a
低電壓應力.
$3
1451745
650
# 4
$a
倍流整流.
$3
1451744
650
# 4
$a
雙倍降壓.
$3
1451743
856
7 #
$u
https://handle.ncl.edu.tw/11296/2cp6j7
$z
電子資源
$2
http
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圖書館B1F 博碩士論文專區
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T013296
圖書館B1F 博碩士論文專區
不流通(NON_CIR)
碩士論文(TM)
TM 008.165M 0423 113
一般使用(Normal)
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1 records • Pages 1 •
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