DocumentCode
3198452
Title
A digital signal controller for high frequency-based grid-tie inverter connected to wind emulator system: Design and implementation
Author
Amin, M.M. ; Herrera, A. ; Seijo, J. ; Mohammed, O.A.
fYear
2011
fDate
20-23 March 2011
Firstpage
1
Lastpage
8
Abstract
In this paper, a design and implementation of a digital signal controller (DSC) for high frequency-based grid-tie inverter connected to wind emulator system is designed, fabricated, and tested. A 150 MHz (6.67-ns Cycle Time) Texas Instruments TMS320F28335 processor chip is used as the heart of the developed control board. DSC based board is a highly integrated, high-performance solution for demanding control applications. It is designed for applications requiring a single board solution to control up to four, high frequency-based three phase converters or in general power electronics industrial applications. The main advantages of the developed DSC-board are: lower cost, higher processing speed capability, smaller size and weight, more reliable (embedded and computer independent with USB communication for program downloading process). The developed controller is designed for controlling a 3 kW grid-connected high frequency PWM inverter in order to inject the wind emulator system power into the grid. This study is also implemented in a laboratory setup for 3 kW Semikron power inverter module under 30 kHz switching frequency. The experimental results are presented and discussed to verify the effectiveness of the developed controller for high frequency operation.
Keywords
PWM invertors; control system synthesis; digital signal processing chips; phase convertors; power electronics; power grids; switching convertors; wind power; DSC based board; Semikron power inverter module; Texas instruments TMS320F28335 processor chip; control board; digital signal controller; frequency 150 MHz; grid-connected high frequency PWM inverter; high frequency-based grid tie inverter; high frequency-based three phase converter; high processing speed capability; high-performance solution; power 3 kW; power electronics industrial application; single board solution; wind emulator system fabrication; Digital signal processing; Frequency control; Inverters; Mathematical model; Reactive power; Voltage control; Wind turbines; Digital signal processors (DSPs); PWM inverter; high frequency power converters; wind emulator system;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Systems Conference and Exposition (PSCE), 2011 IEEE/PES
Conference_Location
Phoenix, AZ
Print_ISBN
978-1-61284-789-4
Electronic_ISBN
978-1-61284-787-0
Type
conf
DOI
10.1109/PSCE.2011.5772619
Filename
5772619
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