語系:
繁體中文
English
說明(常見問題)
回圖書館首頁
手機版館藏查詢
登入
回首頁
切換:
標籤
|
MARC模式
|
ISBD
A New Fault-Tolerant Topology and Op...
~
Alshawish, Ali Mohamed.
FindBook
Google Book
Amazon
博客來
A New Fault-Tolerant Topology and Operation Scheme for the High Voltage Stage in a Three-Phase Solid-State Transformer.
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
A New Fault-Tolerant Topology and Operation Scheme for the High Voltage Stage in a Three-Phase Solid-State Transformer./
作者:
Alshawish, Ali Mohamed.
出版者:
Ann Arbor : ProQuest Dissertations & Theses, : 2021,
面頁冊數:
117 p.
附註:
Source: Dissertations Abstracts International, Volume: 83-01, Section: A.
Contained By:
Dissertations Abstracts International83-01A.
標題:
Electrical engineering. -
電子資源:
https://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=28318092
ISBN:
9798516961717
A New Fault-Tolerant Topology and Operation Scheme for the High Voltage Stage in a Three-Phase Solid-State Transformer.
Alshawish, Ali Mohamed.
A New Fault-Tolerant Topology and Operation Scheme for the High Voltage Stage in a Three-Phase Solid-State Transformer.
- Ann Arbor : ProQuest Dissertations & Theses, 2021 - 117 p.
Source: Dissertations Abstracts International, Volume: 83-01, Section: A.
Thesis (Ph.D.)--University of Kansas, 2021.
This item must not be sold to any third party vendors.
Solid-state transformers (SSTs) are comprised of several cascaded power stages with different voltage levels. This leads to more challenges for operation and maintenance of the SSTs not only under critical conditions, but also during normal operation. However, one of the most important reliability concerns for the SSTs is related to high voltage side switch and grid faults. High voltage stress on the switches, together with the fact that most modern SST topologies incorporate large number of power switches in the high voltage side, contribute to a higher probability of a switch fault occurrence. The power electronic switches in the high voltage stage are under very high voltage stress, significantly higher than other SST stages. Therefore, the probability of the switch failures becomes more substantial in this stage. In this research, a new technique is proposed to improve the overall reliability of the SSTs by enhancing the reliability of the high voltage stage.The proposed method restores the normal operation of the SST from the point of view of the load even though the input stage voltages are unbalanced due to the switch faults. On the other hand, high voltage grid faults that result in unbalanced operating conditions in the SST can also lead to dire consequences in regards to safety and reliability. The proposed method can also revamp the faulty operation to the pre-fault conditions in the case of grid faults. The proposed method integrates the quasi-z-source inverter topology into the SST topology for rebalancing the transformer voltages. Therefore, this work develops a new SST topology in conjunction with a fault-tolerant operation strategy that can fully restore operation of the proposed SST in the case of the two aforementioned fault scenarios. The proposed fault-tolerant operation strategy rebalances the line-to-line voltages after a fault occurrence by modifying the phase angles between the phase voltages generated by the high voltage stage of the proposed SST. The boosting property of the quasi z source inverter topology circuitry is then used to increase the amplitude of the rebalanced line-to-line voltages to their pre-fault values. A modified modulation technique is proposed for modifying the phase angles and controlling the quasi z source inverter topology shoot-through duty ratio.The specific contributions of this work are as follows:•The proposed method enables the SST to operate normally in case of switch fault occurrences due to high voltage stress. The function of faulty cells is compensated for without adding any extra legs or backup power cells. The remaining healthy cells are used to modify and balance the output voltage.•Using the proposed method, the delivered power by the SST after fault occurrence will be the same as the pre-fault conditions. Modifying the angles of phase voltages and using the feature of the proposed SST to boost the voltages lead to deliver the same power as in the pre-fault conditions.•Using the quasi-z-source inverter topology in the proposed method increases the reliability of the proposed SST topology since the transformer will have the ability to generate balanced three phase voltages using only two phase voltages.•The proposed method increases the lifetime of the SST after fault occurrence by distributing the voltage stress symmetrically between all cells of the high voltage stage in the three phases .•The proposed method guarantees the regulation of the output voltage of the SST, since the proposed SST topology can isolate the load from any disturbances in the grid. Also, the obtained output voltage of the proposed SST is balanced. As a result of this, there is no difference between the pre-fault voltage and post-fault voltage. Therefore, the obtained voltages will be synchronized well with the grid.
ISBN: 9798516961717Subjects--Topical Terms:
649834
Electrical engineering.
A New Fault-Tolerant Topology and Operation Scheme for the High Voltage Stage in a Three-Phase Solid-State Transformer.
LDR
:04853nmm a2200301 4500
001
2282301
005
20211001100817.5
008
220723s2021 ||||||||||||||||| ||eng d
020
$a
9798516961717
035
$a
(MiAaPQ)AAI28318092
035
$a
AAI28318092
040
$a
MiAaPQ
$c
MiAaPQ
100
1
$a
Alshawish, Ali Mohamed.
$3
3561088
245
1 0
$a
A New Fault-Tolerant Topology and Operation Scheme for the High Voltage Stage in a Three-Phase Solid-State Transformer.
260
1
$a
Ann Arbor :
$b
ProQuest Dissertations & Theses,
$c
2021
300
$a
117 p.
500
$a
Source: Dissertations Abstracts International, Volume: 83-01, Section: A.
500
$a
Advisor: Kulkarni, Prasad.
502
$a
Thesis (Ph.D.)--University of Kansas, 2021.
506
$a
This item must not be sold to any third party vendors.
520
$a
Solid-state transformers (SSTs) are comprised of several cascaded power stages with different voltage levels. This leads to more challenges for operation and maintenance of the SSTs not only under critical conditions, but also during normal operation. However, one of the most important reliability concerns for the SSTs is related to high voltage side switch and grid faults. High voltage stress on the switches, together with the fact that most modern SST topologies incorporate large number of power switches in the high voltage side, contribute to a higher probability of a switch fault occurrence. The power electronic switches in the high voltage stage are under very high voltage stress, significantly higher than other SST stages. Therefore, the probability of the switch failures becomes more substantial in this stage. In this research, a new technique is proposed to improve the overall reliability of the SSTs by enhancing the reliability of the high voltage stage.The proposed method restores the normal operation of the SST from the point of view of the load even though the input stage voltages are unbalanced due to the switch faults. On the other hand, high voltage grid faults that result in unbalanced operating conditions in the SST can also lead to dire consequences in regards to safety and reliability. The proposed method can also revamp the faulty operation to the pre-fault conditions in the case of grid faults. The proposed method integrates the quasi-z-source inverter topology into the SST topology for rebalancing the transformer voltages. Therefore, this work develops a new SST topology in conjunction with a fault-tolerant operation strategy that can fully restore operation of the proposed SST in the case of the two aforementioned fault scenarios. The proposed fault-tolerant operation strategy rebalances the line-to-line voltages after a fault occurrence by modifying the phase angles between the phase voltages generated by the high voltage stage of the proposed SST. The boosting property of the quasi z source inverter topology circuitry is then used to increase the amplitude of the rebalanced line-to-line voltages to their pre-fault values. A modified modulation technique is proposed for modifying the phase angles and controlling the quasi z source inverter topology shoot-through duty ratio.The specific contributions of this work are as follows:•The proposed method enables the SST to operate normally in case of switch fault occurrences due to high voltage stress. The function of faulty cells is compensated for without adding any extra legs or backup power cells. The remaining healthy cells are used to modify and balance the output voltage.•Using the proposed method, the delivered power by the SST after fault occurrence will be the same as the pre-fault conditions. Modifying the angles of phase voltages and using the feature of the proposed SST to boost the voltages lead to deliver the same power as in the pre-fault conditions.•Using the quasi-z-source inverter topology in the proposed method increases the reliability of the proposed SST topology since the transformer will have the ability to generate balanced three phase voltages using only two phase voltages.•The proposed method increases the lifetime of the SST after fault occurrence by distributing the voltage stress symmetrically between all cells of the high voltage stage in the three phases .•The proposed method guarantees the regulation of the output voltage of the SST, since the proposed SST topology can isolate the load from any disturbances in the grid. Also, the obtained output voltage of the proposed SST is balanced. As a result of this, there is no difference between the pre-fault voltage and post-fault voltage. Therefore, the obtained voltages will be synchronized well with the grid.
590
$a
School code: 0099.
650
4
$a
Electrical engineering.
$3
649834
650
4
$a
Fault tolerance.
$3
3561030
650
4
$a
Nuclear energy.
$3
539127
650
4
$a
Semiconductors.
$3
516162
650
4
$a
Controllers.
$3
3559217
650
4
$a
Circuits.
$3
3555093
650
4
$a
Design.
$3
518875
650
4
$a
HVAC.
$3
3555644
650
4
$a
Alternative energy sources.
$3
3561089
650
4
$a
Energy resources.
$3
3561090
650
4
$a
Renewable resources.
$3
3559207
650
4
$a
Nuclear power plants.
$3
645334
650
4
$a
Efficiency.
$3
753744
690
$a
0544
690
$a
0389
710
2
$a
University of Kansas.
$b
Electrical Engineering & Computer Science.
$3
1018713
773
0
$t
Dissertations Abstracts International
$g
83-01A.
790
$a
0099
791
$a
Ph.D.
792
$a
2021
793
$a
English
856
4 0
$u
https://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=28318092
筆 0 讀者評論
館藏地:
全部
電子資源
出版年:
卷號:
館藏
1 筆 • 頁數 1 •
1
條碼號
典藏地名稱
館藏流通類別
資料類型
索書號
使用類型
借閱狀態
預約狀態
備註欄
附件
W9434034
電子資源
11.線上閱覽_V
電子書
EB
一般使用(Normal)
在架
0
1 筆 • 頁數 1 •
1
多媒體
評論
新增評論
分享你的心得
Export
取書館
處理中
...
變更密碼
登入