Full metadata
Title
A DC-DC multiport converter based solid state transformer integrating distributed generation and storage
Description
The development of a Solid State Transformer (SST) that incorporates a DC-DC multiport converter to integrate both photovoltaic (PV) power generation and battery energy storage is presented in this dissertation. The DC-DC stage is based on a quad-active-bridge (QAB) converter which not only provides isolation for the load, but also for the PV and storage. The AC-DC stage is implemented with a pulse-width-modulated (PWM) single phase rectifier. A unified gyrator-based average model is developed for a general multi-active-bridge (MAB) converter controlled through phase-shift modulation (PSM). Expressions to determine the power rating of the MAB ports are also derived. The developed gyrator-based average model is applied to the QAB converter for faster simulations of the proposed SST during the control design process as well for deriving the state-space representation of the plant. Both linear quadratic regulator (LQR) and single-input-single-output (SISO) types of controllers are designed for the DC-DC stage. A novel technique that complements the SISO controller by taking into account the cross-coupling characteristics of the QAB converter is also presented herein. Cascaded SISO controllers are designed for the AC-DC stage. The QAB demanded power is calculated at the QAB controls and then fed into the rectifier controls in order to minimize the effect of the interaction between the two SST stages. The dynamic performance of the designed control loops based on the proposed control strategies are verified through extensive simulation of the SST average and switching models. The experimental results presented herein show that the transient responses for each control strategy match those from the simulations results thus validating them.
Date Created
2011
Contributors
- Falcones, Sixifo Daniel (Author)
- Ayyanar, Raja (Thesis advisor)
- Karady, George G. (Committee member)
- Tylavsky, Daniel (Committee member)
- Tsakalis, Konstantinos (Committee member)
- Arizona State University (Publisher)
Topical Subject
Resource Type
Extent
xv, 94 p. : ill. (some col.)
Language
eng
Copyright Statement
In Copyright
Primary Member of
Peer-reviewed
No
Open Access
No
Handle
https://hdl.handle.net/2286/R.I.9346
Statement of Responsibility
Sixifo Daniel Falcones
Description Source
Viewed on Feb. 1, 2012
Level of coding
full
Note
thesis
Partial requirement for: Ph.D., Arizona State University, 2011
bibliography
Includes bibliographical references (p. 92-94)
Field of study: Electrical engineering
System Created
- 2011-08-12 04:56:53
System Modified
- 2021-08-30 01:51:52
- 3 years 2 months ago
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