Unified Control for the Permanent Magnet Generator and Rectifier System

The structure of a permanent magnet generator (PMG) connected with an active front-end rectifier is very popular in the AC-DC architecture. Especially for certain applications like aircraft and vehicles, power density and efficiency is critical. Since the generator and the rectifier can be controlle...

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Main Author: Xu, Zhuxian
Other Authors: Electrical and Computer Engineering
Format: Others
Published: Virginia Tech 2014
Subjects:
Online Access:http://hdl.handle.net/10919/33007
http://scholar.lib.vt.edu/theses/available/etd-05192010-102536/
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spelling ndltd-VTETD-oai-vtechworks.lib.vt.edu-10919-330072021-12-08T05:44:48Z Unified Control for the Permanent Magnet Generator and Rectifier System Xu, Zhuxian Electrical and Computer Engineering Boroyevich, Dushan Wang, Fei Fred De La Ree, Jaime unified control PMG and rectifier system system efficiency optimization sensorless vector control The structure of a permanent magnet generator (PMG) connected with an active front-end rectifier is very popular in the AC-DC architecture. Especially for certain applications like aircraft and vehicles, power density and efficiency is critical. Since the generator and the rectifier can be controlled simultaneously, it would be very desirable to develop a unified control. With this unified control, the boost inductors between the PMG and rectifier is eliminated, which significantly reduce the volume and the weight of the whole system and improve the system power density. Also the system efficiency can be improved with appropriate control strategy. In this thesis, a unified control for the permanent magnet generator and rectifier system is presented. Firstly, the unified model of the PMG and rectifier system is given as the basis to design the control system. Secondly, a unified control method for PMG and rectifier system is introduced. The design procedure for each control loops are presented in detail, including current control loop, voltage control loop, reactive control loop and speed and rotor position estimator loop. Thirdly, the hardware is developed and the experiment is conducted to verify the control strategy. Fourthly, a method to optimize the overall system efficiency by appropriate reactive power distribution is proposed. The two cases when the DC link voltage is flexible and the DC link voltage is fixed are considered. Master of Science 2014-03-14T20:37:40Z 2014-03-14T20:37:40Z 2010-05-03 2010-05-19 2010-06-11 2010-06-11 Thesis etd-05192010-102536 http://hdl.handle.net/10919/33007 http://scholar.lib.vt.edu/theses/available/etd-05192010-102536/ Xu_Zhuxian_T_2010_v3.pdf In Copyright http://rightsstatements.org/vocab/InC/1.0/ application/pdf Virginia Tech
collection NDLTD
format Others
sources NDLTD
topic unified control
PMG and rectifier system
system efficiency optimization
sensorless vector control
spellingShingle unified control
PMG and rectifier system
system efficiency optimization
sensorless vector control
Xu, Zhuxian
Unified Control for the Permanent Magnet Generator and Rectifier System
description The structure of a permanent magnet generator (PMG) connected with an active front-end rectifier is very popular in the AC-DC architecture. Especially for certain applications like aircraft and vehicles, power density and efficiency is critical. Since the generator and the rectifier can be controlled simultaneously, it would be very desirable to develop a unified control. With this unified control, the boost inductors between the PMG and rectifier is eliminated, which significantly reduce the volume and the weight of the whole system and improve the system power density. Also the system efficiency can be improved with appropriate control strategy. In this thesis, a unified control for the permanent magnet generator and rectifier system is presented. Firstly, the unified model of the PMG and rectifier system is given as the basis to design the control system. Secondly, a unified control method for PMG and rectifier system is introduced. The design procedure for each control loops are presented in detail, including current control loop, voltage control loop, reactive control loop and speed and rotor position estimator loop. Thirdly, the hardware is developed and the experiment is conducted to verify the control strategy. Fourthly, a method to optimize the overall system efficiency by appropriate reactive power distribution is proposed. The two cases when the DC link voltage is flexible and the DC link voltage is fixed are considered. === Master of Science
author2 Electrical and Computer Engineering
author_facet Electrical and Computer Engineering
Xu, Zhuxian
author Xu, Zhuxian
author_sort Xu, Zhuxian
title Unified Control for the Permanent Magnet Generator and Rectifier System
title_short Unified Control for the Permanent Magnet Generator and Rectifier System
title_full Unified Control for the Permanent Magnet Generator and Rectifier System
title_fullStr Unified Control for the Permanent Magnet Generator and Rectifier System
title_full_unstemmed Unified Control for the Permanent Magnet Generator and Rectifier System
title_sort unified control for the permanent magnet generator and rectifier system
publisher Virginia Tech
publishDate 2014
url http://hdl.handle.net/10919/33007
http://scholar.lib.vt.edu/theses/available/etd-05192010-102536/
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