Národní úložiště šedé literatury Nalezeno 2 záznamů.  Hledání trvalo 0.01 vteřin. 
Design of synchronous reluctance motor with permanent magnets
Knebl, Ladislav ; Huzlík, Rostislav (oponent) ; Ondrůšek, Čestmír (vedoucí práce)
In these days a huge emphasis is put on efficiency of electric devices, both from the side of the owner as well as from the legislation. In the case of electric motors the best efficiency can be achieved with a surface mounted permanent magnet (SMPM) motor, which may be, even in the case of small machines, higher than 90%. Unfortunately, these motors are expensive, because rare earth magnets, such as neodymium magnets, are used, and use of the AC drive system is required. Because of its high price, engineers are trying to find a cheaper machine with parameters similar to SMPM solution. Permanent magnet assisted synchronous reluctance (PMASR) motor is one possible replacement for SMPM. This machine is cheaper, because smaller amount of magnets and still similar or even better characteristics could be achieved, but still the AC drive needs to be used. With PMASR topology it is possible to use low-cost ferrite magnets to replace expensive neodymium magnets, thus the machine will be cheaper. In this work, there will be PMASR topology explained more thoroughly, including the electromagnetic design process. Analytical analysis will be performed on a chosen optimal model. Results of the FE analysis will be evaluated with the analytical model. The prototype will be manufactured from the optimal designed model. The measured data from the prototype will be compared with the calculated data.
Design of synchronous reluctance motor with permanent magnets
Knebl, Ladislav ; Huzlík, Rostislav (oponent) ; Ondrůšek, Čestmír (vedoucí práce)
In these days a huge emphasis is put on efficiency of electric devices, both from the side of the owner as well as from the legislation. In the case of electric motors the best efficiency can be achieved with a surface mounted permanent magnet (SMPM) motor, which may be, even in the case of small machines, higher than 90%. Unfortunately, these motors are expensive, because rare earth magnets, such as neodymium magnets, are used, and use of the AC drive system is required. Because of its high price, engineers are trying to find a cheaper machine with parameters similar to SMPM solution. Permanent magnet assisted synchronous reluctance (PMASR) motor is one possible replacement for SMPM. This machine is cheaper, because smaller amount of magnets and still similar or even better characteristics could be achieved, but still the AC drive needs to be used. With PMASR topology it is possible to use low-cost ferrite magnets to replace expensive neodymium magnets, thus the machine will be cheaper. In this work, there will be PMASR topology explained more thoroughly, including the electromagnetic design process. Analytical analysis will be performed on a chosen optimal model. Results of the FE analysis will be evaluated with the analytical model. The prototype will be manufactured from the optimal designed model. The measured data from the prototype will be compared with the calculated data.

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