Modular DAB DC-DC converter low voltage side dc link capacitor two-stage charging-up control for solid state transformer application
This paper presents an effective two stage DAB charging-up control method for modular DC-DC converters with low voltage side common DC bus voltage starting from zero. In 1st stage of charging, the DAB controller is modified to allow variable duty cycle control of medium voltage side DAB converter. I...
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sg-ntu-dr.10356-870592021-01-10T11:17:03Z Modular DAB DC-DC converter low voltage side dc link capacitor two-stage charging-up control for solid state transformer application Cao, Shuyu Sriram, Vaisambhayana Brihadeeswara Dehghani Tafti, Hossein Ravi Kishore, Kanamarlapudi Venkata Yeo, Howe Li Tripathi, Anshuman Pou, Josep School of Electrical and Electronic Engineering 2017 Asian Conference on Energy, Power and Transportation Electrification (ACEPT 2017) Energy Research Institute @ NTU (ERI@N) Solid State Transformer (SST) Dual Active Bridge (DAB) This paper presents an effective two stage DAB charging-up control method for modular DC-DC converters with low voltage side common DC bus voltage starting from zero. In 1st stage of charging, the DAB controller is modified to allow variable duty cycle control of medium voltage side DAB converter. In this stage, a constant charging-up current is applied so that low voltage side DC link voltage is charged up linearly. In the 2nd stage of charging control, the normal dual voltage and current control loops are applied. At the end of 2nd charging up stage, the DAB controller is ready for normal power regulation. The proposed DAB charging control method is applicable for modular SST start-up application for both grid tied and standalone application. The important advantage of the proposed DAB charging control method is that the DC-DC converter performance is robust to DC-DC converter circuit parameter variation and operation condition variation among DAB modules. Another attractive advantage is that the proposed solution is purely DAB control algorithm change without requiring extra circuit component in start-up charging process. Accepted version 2018-01-10T03:41:54Z 2019-12-06T16:34:14Z 2018-01-10T03:41:54Z 2019-12-06T16:34:14Z 2017 Conference Paper Cao, S., Sriram, V. B., Dehghani Tafti, H., Ravi Kishore, K. V., Yeo, H. L., Tripathi, A., et al. (2017). Modular DAB DC-DC converter low voltage side dc link capacitor two-stage charging-up control for solid state transformer application. 2017 Asian Conference on Energy, Power and Transportation Electrification (ACEPT 2017). https://hdl.handle.net/10356/87059 http://hdl.handle.net/10220/44295 10.1109/ACEPT.2017.8168624 en © 2017 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for all other uses, in any current or future media, including reprinting/republishing this material for advertising or promotional purposes, creating new collective works, for resale or redistribution to servers or lists, or reuse of any copyrighted component of this work in other works. The published version is available at: [http://dx.doi.org/10.1109/ACEPT.2017.8168624]. 7 p. application/pdf |
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Solid State Transformer (SST) Dual Active Bridge (DAB) |
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Solid State Transformer (SST) Dual Active Bridge (DAB) Cao, Shuyu Sriram, Vaisambhayana Brihadeeswara Dehghani Tafti, Hossein Ravi Kishore, Kanamarlapudi Venkata Yeo, Howe Li Tripathi, Anshuman Pou, Josep Modular DAB DC-DC converter low voltage side dc link capacitor two-stage charging-up control for solid state transformer application |
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This paper presents an effective two stage DAB charging-up control method for modular DC-DC converters with low voltage side common DC bus voltage starting from zero. In 1st stage of charging, the DAB controller is modified to allow variable duty cycle control of medium voltage side DAB converter. In this stage, a constant charging-up current is applied so that low voltage side DC link voltage is charged up linearly. In the 2nd stage of charging control, the normal dual voltage and current control loops are applied. At the end of 2nd charging up stage, the DAB controller is ready for normal power regulation. The proposed DAB charging control method is applicable for modular SST start-up application for both grid tied and standalone application. The important advantage of the proposed DAB charging control method is that the DC-DC converter performance is robust to DC-DC converter circuit parameter variation and operation condition variation among DAB modules. Another attractive advantage is that the proposed solution is purely DAB control algorithm change without requiring extra circuit component in start-up charging process. |
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School of Electrical and Electronic Engineering |
author_facet |
School of Electrical and Electronic Engineering Cao, Shuyu Sriram, Vaisambhayana Brihadeeswara Dehghani Tafti, Hossein Ravi Kishore, Kanamarlapudi Venkata Yeo, Howe Li Tripathi, Anshuman Pou, Josep |
format |
Conference or Workshop Item |
author |
Cao, Shuyu Sriram, Vaisambhayana Brihadeeswara Dehghani Tafti, Hossein Ravi Kishore, Kanamarlapudi Venkata Yeo, Howe Li Tripathi, Anshuman Pou, Josep |
author_sort |
Cao, Shuyu |
title |
Modular DAB DC-DC converter low voltage side dc link capacitor two-stage charging-up control for solid state transformer application |
title_short |
Modular DAB DC-DC converter low voltage side dc link capacitor two-stage charging-up control for solid state transformer application |
title_full |
Modular DAB DC-DC converter low voltage side dc link capacitor two-stage charging-up control for solid state transformer application |
title_fullStr |
Modular DAB DC-DC converter low voltage side dc link capacitor two-stage charging-up control for solid state transformer application |
title_full_unstemmed |
Modular DAB DC-DC converter low voltage side dc link capacitor two-stage charging-up control for solid state transformer application |
title_sort |
modular dab dc-dc converter low voltage side dc link capacitor two-stage charging-up control for solid state transformer application |
publishDate |
2018 |
url |
https://hdl.handle.net/10356/87059 http://hdl.handle.net/10220/44295 |
_version_ |
1690658379359322112 |