DocumentCode :
1557533
Title :
An Efficient DSP-FPGA-Based Real-Time Implementation Method of SVM Algorithms for an Indirect Matrix Converter
Author :
Hamouda, Mahmoud ; Blanchette, Handy Fortin ; Al-Haddad, Kamal ; Fnaiech, Farhat
Author_Institution :
ESSTT, Univ. of Tunis, Tunis, Tunisia
Volume :
58
Issue :
11
fYear :
2011
Firstpage :
5024
Lastpage :
5031
Abstract :
This paper proposes a real-time DSP- and FPGA-based implementation method of a space vector modulation (SVM) algorithm for an indirect matrix converter (IMC). Therefore, low-cost and compact control platform is built using a 32-bit fixed-point DSP (TMS320F2812) operating at 150 MHz and a SPARTAN 3E FPGA operating at 50 MHz. The method consists in using the event-manager modules of the DSP to build specified pulses at its PWM output peripherals, which are fed to the digital input ports of a FPGA. Moreover, a simple logical processing and delay times are thereafter implemented in the FPGA so as to synthesize the suitable gate pulse patterns for the semiconductor-controlled devices. It is shown that the proposed implementation method enables high switching frequency operation with high pulse resolution as well as a negligible propagation time for the generation of the gating pulses. Experimental results from an IMC prototype confirm the practical feasibility of the proposed technique.
Keywords :
digital signal processing chips; field programmable gate arrays; matrix convertors; DSP-FPGA-based real-time implementation method; IMC prototype; SPARTAN 3E FPGA; SVM algorithms; frequency 150 MHz; indirect matrix converter; semiconductor-controlled devices; space vector modulation algorithm; word length 32 bit; Digital signal processing; Field programmable gate arrays; Matrix converters; Pulse width modulation; DSP; FPGA; matrix converters; space vector modulation (SVM);
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2011.2159952
Filename :
5892884
Link To Document :
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