Sliding mode control for DC-AC converter

The aim of this study is to design a sliding mode controller (SMC) for DC-AC converter to track the desired AC voltage under load variation. In order to design the controller, a set of differential equations describing the plant need to be established to obtain state-space equation of the system. Th...

全面介紹

Saved in:
書目詳細資料
主要作者: Izadifar, Pouya
格式: Thesis
語言:English
出版: 2012
主題:
在線閱讀:http://eprints.utm.my/id/eprint/32516/5/PouyaIzadifarMFKE2012.pdf
標簽: 添加標簽
沒有標簽, 成為第一個標記此記錄!
id my-utm-ep.32516
record_format uketd_dc
spelling my-utm-ep.325162017-09-25T07:15:17Z Sliding mode control for DC-AC converter 2012-06 Izadifar, Pouya TK Electrical engineering. Electronics Nuclear engineering The aim of this study is to design a sliding mode controller (SMC) for DC-AC converter to track the desired AC voltage under load variation. In order to design the controller, a set of differential equations describing the plant need to be established to obtain state-space equation of the system. The state variables of the control system are the variables which come from the energy storage elements, such as the inductor current or capacitor voltage. In converters, the level of current is a function of load and most of the time is nonlinear. The suggested controller does not need current sensors and only the desired AC voltage is used as reference. Variation of resistive load is considered as uncertainty and it causes that system to become unstable, so that output voltage has not the ability to track reference sinusoidal voltage. The effect of load changing on the system is compensated effectively by SMC. Two indices are considered for measuring the existing error between output and reference voltage which are integral of absolute error (IAE) and integral of total control power (ITCP). Also, two gains from SMC are optimized by using GA optimization technique in order to minimize the error. Finally, the results are compared with existing PID controller which is implemented to the system. From simulation, it is observed that SMC is more robust, fast and stable against perturbations in contrast to PID controller in DC-AC converter. 2012-06 Thesis http://eprints.utm.my/id/eprint/32516/ http://eprints.utm.my/id/eprint/32516/5/PouyaIzadifarMFKE2012.pdf application/pdf en public masters Universiti Teknologi Malaysia, Faculty of Electrical Engineering Faculty of Electrical Engineering
institution Universiti Teknologi Malaysia
collection UTM Institutional Repository
language English
topic TK Electrical engineering
Electronics Nuclear engineering
spellingShingle TK Electrical engineering
Electronics Nuclear engineering
Izadifar, Pouya
Sliding mode control for DC-AC converter
description The aim of this study is to design a sliding mode controller (SMC) for DC-AC converter to track the desired AC voltage under load variation. In order to design the controller, a set of differential equations describing the plant need to be established to obtain state-space equation of the system. The state variables of the control system are the variables which come from the energy storage elements, such as the inductor current or capacitor voltage. In converters, the level of current is a function of load and most of the time is nonlinear. The suggested controller does not need current sensors and only the desired AC voltage is used as reference. Variation of resistive load is considered as uncertainty and it causes that system to become unstable, so that output voltage has not the ability to track reference sinusoidal voltage. The effect of load changing on the system is compensated effectively by SMC. Two indices are considered for measuring the existing error between output and reference voltage which are integral of absolute error (IAE) and integral of total control power (ITCP). Also, two gains from SMC are optimized by using GA optimization technique in order to minimize the error. Finally, the results are compared with existing PID controller which is implemented to the system. From simulation, it is observed that SMC is more robust, fast and stable against perturbations in contrast to PID controller in DC-AC converter.
format Thesis
qualification_level Master's degree
author Izadifar, Pouya
author_facet Izadifar, Pouya
author_sort Izadifar, Pouya
title Sliding mode control for DC-AC converter
title_short Sliding mode control for DC-AC converter
title_full Sliding mode control for DC-AC converter
title_fullStr Sliding mode control for DC-AC converter
title_full_unstemmed Sliding mode control for DC-AC converter
title_sort sliding mode control for dc-ac converter
granting_institution Universiti Teknologi Malaysia, Faculty of Electrical Engineering
granting_department Faculty of Electrical Engineering
publishDate 2012
url http://eprints.utm.my/id/eprint/32516/5/PouyaIzadifarMFKE2012.pdf
_version_ 1747816021125758976