DocumentCode
3217525
Title
Control of DC-link by adaptive PID control for DC/DC boost converter
Author
Nuchkrua, Thanana ; Leephakpreeda, Thananchai
Author_Institution
Sirindhorn Int. Inst. of Technol., Thammasat Univ., Pathum-Tani, Thailand
fYear
2013
fDate
2-4 Dec. 2013
Firstpage
423
Lastpage
426
Abstract
Generally, a photovoltaic (PV) system generates a wide range of voltages and currents at the terminal output. Normally, the PV cell cannot functionally maintain a constant direct current (DC) voltage while incident illumination and ambient temperature. To overcome that problem, a power electronics convertor such as DC/DC converter with the control scheme topology may be used. However, a linear conventional controller like PID control scheme is not suitable to be a controller for regulating the output voltage of DC/DC converter due to nonlinearity of converter. In this paper, the adaptive PID control scheme is considered to stabilizing the output voltage of the DC/DC converter in order to maintain and stabilize the constant DC-link voltage in both power line and load variations. Conventional control is compared with the proposed controller in both transient and steady state responses. The results show that the proposed control scheme is more performance than conventional control scheme. The transient response is improved by the proposed controller, in which the gain parameters are automatically tuned. Moreover, at steady state response is more robust against to the uncertainty while operation.
Keywords
DC-DC power convertors; adaptive control; photovoltaic power systems; three-term control; voltage control; DC-DC boost converter; DC-link control; PV cell; PV system; adaptive PID control scheme; ambient temperature; constant DC-link voltage; constant direct current voltage; converter nonlinearity; gain parameters; incident illumination; linear conventional controller; load variation; output voltage regulation; photovoltaic system; power electronic convertor; power line; steady state response; transient response; Arrays; DC-DC power converters; Mathematical model; PD control; Simulation; Steady-state; Voltage control;
fLanguage
English
Publisher
ieee
Conference_Titel
Automatic Control Conference (CACS), 2013 CACS International
Conference_Location
Nantou
Print_ISBN
978-1-4799-2384-7
Type
conf
DOI
10.1109/CACS.2013.6734172
Filename
6734172
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