In this paper we are concerned with the problem of optimally designing three-phase 7.5 kw induction electric motors. This problem can be formulated as a mixed variable programming problem. Two different solution strategies have been used to solve this problem. The first one consists in solving the continuous nonlinear optimization problem obtained by suitably relaxing the discrete variables. On the opposite, the second strategy tries to manage directly the discrete variables by alternating a continuous search phase and a discrete search phase. The comparison between the numerical results obtained with the above two strategies clearly shows the fruitfulness of taking directly into account the presence of both continuous and discrete variables.
Design of induction motors using a mixed-variable approach / Liuzzi, Giampaolo; Lucidi, Stefano; Piccialli, Veronica; Marco, Villani. - In: COMPUTATIONAL MANAGEMENT SCIENCE. - ISSN 1619-697X. - STAMPA. - 2:3(2005), pp. 213-228. [10.1007/s10287-005-0024-2]
Design of induction motors using a mixed-variable approach
LIUZZI, Giampaolo;LUCIDI, Stefano;PICCIALLI, Veronica;
2005
Abstract
In this paper we are concerned with the problem of optimally designing three-phase 7.5 kw induction electric motors. This problem can be formulated as a mixed variable programming problem. Two different solution strategies have been used to solve this problem. The first one consists in solving the continuous nonlinear optimization problem obtained by suitably relaxing the discrete variables. On the opposite, the second strategy tries to manage directly the discrete variables by alternating a continuous search phase and a discrete search phase. The comparison between the numerical results obtained with the above two strategies clearly shows the fruitfulness of taking directly into account the presence of both continuous and discrete variables.File | Dimensione | Formato | |
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