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主動橋式單極切換之交直流雙向電能轉換器研製 = = Implementa...
~
黃子峰
主動橋式單極切換之交直流雙向電能轉換器研製 = = Implementation of Unipolar Switching AC-to-DC Bidirectional Active Bridge Converter /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
主動橋式單極切換之交直流雙向電能轉換器研製 =/ 黃子峰.
Reminder of title:
Implementation of Unipolar Switching AC-to-DC Bidirectional Active Bridge Converter /
remainder title:
Implementation of Unipolar Switching AC-to-DC Bidirectional Active Bridge Converter.
Author:
黃子峰
Published:
雲林縣 :國立虎尾科技大學 , : 民113.07.,
Description:
[9], 117面 :圖, 表 ; : 30公分.;
Notes:
指導教授: 張永農, 唐聖億.
Subject:
Bipolar. -
Online resource:
電子資源
主動橋式單極切換之交直流雙向電能轉換器研製 = = Implementation of Unipolar Switching AC-to-DC Bidirectional Active Bridge Converter /
黃子峰
主動橋式單極切換之交直流雙向電能轉換器研製 =
Implementation of Unipolar Switching AC-to-DC Bidirectional Active Bridge Converter /Implementation of Unipolar Switching AC-to-DC Bidirectional Active Bridge Converter.黃子峰. - 初版. - 雲林縣 :國立虎尾科技大學 ,民113.07. - [9], 117面 :圖, 表 ;30公分.
指導教授: 張永農, 唐聖億.
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.
本論文完成一主動橋式單極切換之交直流雙向電能轉換器研製,電路使用主動橋式架構,並採用平均電流控制法以及正弦脈波寬度調變技術進行回授控制,正弦脈波寬度調變分別為單極性觸發控制與雙極性觸發控制,並比較兩控制法之間的差異。控制器方面採用德州儀器公司(Texas Instruments)開發的數位信號處理器TMS320F28335做為轉換器系統控制核心,使轉換器於順向模式時具備高功率因數與輸出電壓穩定的能力,逆變模式時具備直流逆變弦波交流電力供應之功能,將功率由直流匯流排傳輸至交流電網。 本文最終以交流電網電壓110V/220V、直流匯流排電壓400V做為轉換器規格,並使用相同架構設計額定功率1kW及3kW兩種轉換器規格量測數據,比較單極性控制與雙極性控制之性能。轉換器操作於順向模式,額定功率1kW時單極性控制最高效率為97.93%,雙極性控制最高效率為97.2%;額定功率3kW時單極性控制最高效率為97.96%,雙極性控制最高效率為95.88%。轉換器操作於逆變模式,額定功率1kW時單極性控制最高效率為97.94%,雙極性控制最高效率為97.04%;額定功率3kW時單極性控制最高效率為97.97%,雙極性控制最高效率為96.46%。由實驗結果得出,轉換器操作於順向模式與逆變模式,在效率、功率因數上使用單極性觸發控制較高,在電流總諧波失真上以使用單極性觸發控制較低。.
(平裝)Subjects--Topical Terms:
1215466
Bipolar.
主動橋式單極切換之交直流雙向電能轉換器研製 = = Implementation of Unipolar Switching AC-to-DC Bidirectional Active Bridge Converter /
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主動橋式單極切換之交直流雙向電能轉換器研製 =
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Implementation of Unipolar Switching AC-to-DC Bidirectional Active Bridge Converter /
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黃子峰.
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Implementation of Unipolar Switching AC-to-DC Bidirectional Active Bridge Converter.
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初版.
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雲林縣 :
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國立虎尾科技大學 ,
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民113.07.
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[9], 117面 :
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圖, 表 ;
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30公分.
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指導教授: 張永農, 唐聖億.
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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.
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含參考書目.
520
3
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本論文完成一主動橋式單極切換之交直流雙向電能轉換器研製,電路使用主動橋式架構,並採用平均電流控制法以及正弦脈波寬度調變技術進行回授控制,正弦脈波寬度調變分別為單極性觸發控制與雙極性觸發控制,並比較兩控制法之間的差異。控制器方面採用德州儀器公司(Texas Instruments)開發的數位信號處理器TMS320F28335做為轉換器系統控制核心,使轉換器於順向模式時具備高功率因數與輸出電壓穩定的能力,逆變模式時具備直流逆變弦波交流電力供應之功能,將功率由直流匯流排傳輸至交流電網。 本文最終以交流電網電壓110V/220V、直流匯流排電壓400V做為轉換器規格,並使用相同架構設計額定功率1kW及3kW兩種轉換器規格量測數據,比較單極性控制與雙極性控制之性能。轉換器操作於順向模式,額定功率1kW時單極性控制最高效率為97.93%,雙極性控制最高效率為97.2%;額定功率3kW時單極性控制最高效率為97.96%,雙極性控制最高效率為95.88%。轉換器操作於逆變模式,額定功率1kW時單極性控制最高效率為97.94%,雙極性控制最高效率為97.04%;額定功率3kW時單極性控制最高效率為97.97%,雙極性控制最高效率為96.46%。由實驗結果得出,轉換器操作於順向模式與逆變模式,在效率、功率因數上使用單極性觸發控制較高,在電流總諧波失真上以使用單極性觸發控制較低。.
520
3
$a
This thesis completes an Implementation of Unipolar Switching AC-to-DC Bidirectional Active Bridge Converter. The circuit is an active bridge structure. This thesis uses the average current control method and sinusoidal pulse width modulation technique for feedback control. Sinusoidal pulse-width modulation (SPWM) is used with both unipolar and bipolar control methods, and compares the differences between the two methods. For the controller, the digital signal processor TMS320F28335 developed by Texas Instruments is used as the core of the converter system control. In forward mode, the converter has the capability of high power factor and stable output voltage. In inverter mode, the converter can convert DC to sinusoidal AC, transferring power from the DC bus to the AC grid. Finally, this thesis sets AC grid voltages of 110V/220V and a DC bus voltage of 400V as the specifications for the converter. This thesis measure and compare two converter configurations with rated powers of 1kW and 3kW designed using the same architecture. When the converter operates in forward mode, the maximum efficiency at a rated power of 1 kW is 97.93% with unipolar control and 97.2% with bipolar control. At a rated power of 3 kW, the maximum efficiency is 97.96% with unipolar control and 95.88% with bipolar control. When the converter operates in inverter mode, the maximum efficiency at a rated power of 1 kW is 97.94% with unipolar control and 97.04% with bipolar control. At a rated power of 3 kW, the maximum efficiency is 97.97% with unipolar control and 96.46% with bipolar control. From the experimental results, it is concluded that the converter operating in both forward and inverter modes achieves the highest efficiency and power factor when using unipolar control. Additionally, the total harmonic distortion of the current is the lowest when using unipolar control..
563
$a
(平裝)
650
# 4
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Bipolar.
$3
1215466
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Unipolar.
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1451899
650
# 4
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Sine Pulse Width Modulation.
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1451898
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# 4
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Bidirectional Converter.
$3
1451897
650
# 4
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Power Factor Correction.
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1003813
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# 4
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Active Bridge.
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1451896
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# 4
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雙極性.
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1151656
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單極性.
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1451895
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# 4
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正弦脈波寬度調變.
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雙向轉換器.
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1219071
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功率因數修正.
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1004785
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# 4
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主動橋式.
$3
1451894
856
7 #
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https://handle.ncl.edu.tw/11296/s9pkq4
$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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T013318
圖書館B1F 博碩士論文專區
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TM 008.165M 4412:7 113
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