1982
DOI: 10.1109/tia.1982.4504052
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Dynamic Simulation of Radially Oriented Permanent Magnet-Type Electronically Operated Synchronous Machines with Parameters Obtained from Finite Element Field Solutions

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Cited by 71 publications
(11 citation statements)
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“…Incidentally, these brushless dc motors are polyphase permanent magnet synchronous motors which are electronically commutated and sequentially switched on. These are usually operated in the self-control mode [8], [9]. These are mostly used for control purposes such as computer disk drives,-robotics, automation, high-quality turntables and tape capstans, etc.…”
Section: Introductionmentioning
confidence: 99%
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“…Incidentally, these brushless dc motors are polyphase permanent magnet synchronous motors which are electronically commutated and sequentially switched on. These are usually operated in the self-control mode [8], [9]. These are mostly used for control purposes such as computer disk drives,-robotics, automation, high-quality turntables and tape capstans, etc.…”
Section: Introductionmentioning
confidence: 99%
“…Depending on the location of the magnets on the rotor, typical brushless permanent magnet synchronous motors can be broadly classified into three kinds, i.e., interior PM synchronous motors which have the permanent magnets buried inside the rotor; surface PM synchronous motors which have their permanent magnets mounted on the surface of the rotor; and inset PM synchronous motors in which the permanent magnets are inset or partially inset into the rotor [ I l l . Depending on the magnetization orientation for the magnets, the rotor can also be classified into radially or circumferentially oriented type configurations, For surface type configuration, the only direction of magnetization is r a l a l [8]. In a brushless PM synchronous motor, there is no provision for rotor side excitation control.…”
Section: Introductionmentioning
confidence: 99%
“…3 have to be done in order to treat the numerical simulation within a reasonable time. Summarized, occurring modeling problems have to be treated in order to predict the weak spots of the controlled drive system with high sufficiency (Jakubowicz, Nougaret, Perret, 1980;Lipo, Turnbull, 1975;Nehl et al, 1982).…”
Section: Analysis and Measurement Of The Controlled Closed-loop Drivementioning
confidence: 99%
“…However, decisions about several simplifycations and assumptions about the real complex system as shown in Fig.2 have to be done in order to treat the numerical simulation within a reasonable time. Summarized, occurring modeling problems have to be treated in order to predict the weak spots of the controlled drive system with high sufficiency [25][26][27][28][29].…”
Section: Analysis and Measurement Of The Controlled Closed-loop Dmentioning
confidence: 99%