Speed sensorless variable structure control of PMSM
There are two main reasons for torque ripple effect when stepping motor with permanent magnet is considered. First is the non-sinusoidal flux distribution and the second is so-called cogging torque. This paper presents theoretical torque ripple minimization procedure and extensive description of its...
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Main Authors: | , |
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Format: | Book Chapter |
Jezik: | English |
Teme: | |
Sorodne knjige/članki: | Vsebovano v:
IECON'2006 |
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LEADER | 01080naa a2200181 ib4500 | ||
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001 | 10872342 | ||
003 | SI-MaCOB | ||
005 | 20121022000000.0 | ||
008 | 061115s2006 fr |||||s|||||||| ||eng c | ||
040 | |a KTFMB |b slv |c SI-MaIIZ |e ppiak | ||
080 | |a 681.5 | ||
100 | 1 | |a Urlep, Evgen. |4 aut | |
245 | 0 | 0 | |a Speed sensorless variable structure control of PMSM |h [Elektronski vir] / |c Evgen Urlep, Karel Jezernik. |
300 | |a [6] f. | ||
520 | |a There are two main reasons for torque ripple effect when stepping motor with permanent magnet is considered. First is the non-sinusoidal flux distribution and the second is so-called cogging torque. This paper presents theoretical torque ripple minimization procedure and extensive description of its implementation on an FPGA device. | ||
653 | 0 | |a speed sensorless control |a PMSM |a control design | |
700 | 1 | 2 | |a Jezernik, Karel. |4 aut |
773 | 0 | |a Annual conference of the IEEE industrial electronics society (32 : 2006 : Paris, France) |t IECON'2006 |d Piscataway : The Institute of Electrical and Electronics Engineering = IEEE, 2006 |w 10871574 |z 1424401364 |g [6] f. |