TY - JOUR
T1 - Topology optimization of induction heating model using sequential linear programming based on move limit with adaptive relaxation
AU - Masuda, Hiroshi
AU - Kanda, Yutaro
AU - Okamoto, Yoshifumi
AU - Hirono, Kazuki
AU - Hoshino, Reona
AU - Wakao, Shinji
AU - Tsuburaya, Tomonori
N1 - Publisher Copyright:
© 2017 H.Masuda et al.
PY - 2017/12/29
Y1 - 2017/12/29
N2 - It is very important to design electrical machineries with high efficiency from the point of view of saving energy. Therefore, topology optimization (TO) is occasionally used as a design method for improving the performance of electrical machinery under the reasonable constraints. Because TO can achieve a design with much higher degree of freedom in terms of structure, there is a possibility for deriving the novel structure which would be quite different from the conventional structure. In this paper, topology optimization using sequential linear programming using move limit based on adaptive relaxation is applied to two models. The magnetic shielding, in which there are many local minima, is firstly employed as firstly benchmarking for the performance evaluation among several mathematical programming methods. Secondly, induction heating model is defined in 2-D axisymmetric field. In this model, the magnetic energy stored in the magnetic body is maximized under the constraint on the volume of magnetic body. Furthermore, the influence of the location of the design domain on the solutions is investigated.
AB - It is very important to design electrical machineries with high efficiency from the point of view of saving energy. Therefore, topology optimization (TO) is occasionally used as a design method for improving the performance of electrical machinery under the reasonable constraints. Because TO can achieve a design with much higher degree of freedom in terms of structure, there is a possibility for deriving the novel structure which would be quite different from the conventional structure. In this paper, topology optimization using sequential linear programming using move limit based on adaptive relaxation is applied to two models. The magnetic shielding, in which there are many local minima, is firstly employed as firstly benchmarking for the performance evaluation among several mathematical programming methods. Secondly, induction heating model is defined in 2-D axisymmetric field. In this model, the magnetic energy stored in the magnetic body is maximized under the constraint on the volume of magnetic body. Furthermore, the influence of the location of the design domain on the solutions is investigated.
KW - Heaviside function
KW - Ih equipment
KW - Method of moving asymptotes
KW - Sequential linear programming
KW - Topology optimization
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U2 - 10.1515/phys-2017-0100
DO - 10.1515/phys-2017-0100
M3 - Article
AN - SCOPUS:85040932699
SN - 1895-1082
VL - 15
SP - 845
EP - 850
JO - Open Physics
JF - Open Physics
IS - 1
ER -