Rapid prototyping tools for power electronic systems: demonstration with shunt active power filters
This paper presents three new rapid prototyping tools to develop power electronic systems. The effectiveness of these tools is demonstrated by designing and building a shunt active power filter. First, a digital signal processor (DSP) model to embed complex control algorithms has been created for de...
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| Published in | IEEE transactions on power electronics Vol. 19; no. 2; pp. 500 - 507 |
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| Main Authors | , , , |
| Format | Journal Article |
| Language | English |
| Published |
New York
IEEE
01.03.2004
The Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
| Subjects | |
| Online Access | Get full text |
| ISSN | 0885-8993 1941-0107 |
| DOI | 10.1109/TPEL.2003.823240 |
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| Abstract | This paper presents three new rapid prototyping tools to develop power electronic systems. The effectiveness of these tools is demonstrated by designing and building a shunt active power filter. First, a digital signal processor (DSP) model to embed complex control algorithms has been created for detailed offline simulations with PSpice. This DSP model emulates the discrete behavior of digital control circuits. The control algorithms in the DSP model are implemented in C-code. Secondly, the control C-code can be downloaded to the ISEADSP for real-time execution. The ISEADSP is a universal DSP control board based on two 80 SHARC processors which execute control algorithms of various nature and highest complexity at 80 MFLOP per second. Thirdly, power electronic building blocks (PEBBs) based on IGBT devices were developed to build and analyze quickly different converter topologies. Combining these three rapid prototyping tools led to a significant reduction of development time of power electronic applications. |
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| AbstractList | This paper presents three new rapid prototyping tools to develop power electronic systems. The effectiveness of these tools is demonstrated by designing and building a shunt active power filter. First, a digital signal processor (DSP) model to embed complex control algorithms has been created for detailed offline simulations with PSpice. This DSP model emulates the discrete behavior of digital control circuits. The control algorithms in the DSP model are implemented in C-code. Secondly, the control C-code can be downloaded to the ISEADSP for real-time execution. The ISEADSP is a universal DSP control board based on two 80 SHARC processors which execute control algorithms of various nature and highest complexity at 80 MFLOP per second. Thirdly, power electronic building blocks (PEBBs) based on IGBT devices were developed to build and analyze quickly different converter topologies. Combining these three rapid prototyping tools led to a significant reduction of development time of power electronic applications. [PERIODICAL ABSTRACTS] This paper presents three new rapid prototyping tools to develop power electronic systems. The effectiveness of these tools is demonstrated by designing and building a shunt active power filter. First, a digital signal processor (DSP) model to embed complex control algorithms has been created for detailed offline simulations with PSpice. This DSP model emulates the discrete behavior of digital control circuits. The control algorithms in the DSP model are implemented in C-code. Secondly, the control C-code can be downloaded to the ISEADSP for real-time execution. The ISEADSP is a universal DSP control board based on two 80 SHARC processors which execute control algorithms of various nature and highest complexity at 80 MFLOP per second. Thirdly, power electronic building blocks (PEBBs) based on IGBT devices were developed to build and analyze quickly different converter topologies. Combining these three rapid prototyping tools led to a significant reduction of development time of power electronic applications. |
| Author | Jacobs, J. Detjen, D. Karipidis, C.-U. De Doncker, R.W. |
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| References | ref13 (ref4) 2001 Gyugyi (ref12) ref11 ref1 Keller (ref5); 3 De Doncker (ref14) 1997 ref16 ref19 (ref8) 2000 ref3 (ref17) 1998 Karipidis (ref9) 2003 (ref18) 2000 Chiado (ref10) 1999 Bertha (ref15); 2 Kuffel (ref6) |
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| SubjectTerms | Active control Active filters Buildings Bypasses Circuit simulation Control theory Digital control Digital signal processing Digital signal processors Electronic switching systems Electronics Microelectronics Microprocessors Power electronics Power system modeling Prototypes Rapid prototyping Shunts Signal processing algorithms |
| Title | Rapid prototyping tools for power electronic systems: demonstration with shunt active power filters |
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