A
robust design method for a
textile-manufacturing-dedicated, high-efficient, energy-saving, multiphase asynchronous motor, includes the following steps: designating a motor; designating design method; designating design variables of the high-efficient, energy-saving, multiphase asynchronous motor; building mathematical models of each index respectively to constitute a
robust design model with multiple indexes; building the controllable
factor level table; selecting appropriate orthogonal table according to the number of the optimizing variables and the
level number of each variable; building an inner orthogonal table for inner design; building an outer orthogonal table for outer design; computing the values of the output characteristics and
signal to
noise ratio of the experimental schemes determined by the inner and outer orthogonal tables; determining the
optimal combination of parameters; going through
tolerance design; drawing the parts of the
textile-manufacturing-dedicated, high-efficient, energy-saving, multiphase asynchronous motor according to the
optimal design scheme, wire-
cutting the mold, dieing, laminating, coiling, inserting windings, dipping paint and assembling. Combining the actual operating characteristics of
textile-manufacturing-dedicated motor, a high-efficient, energy-saving, multiphase asynchronous motor with stable performance, reliable operation and low cost is achieved. The motor achieves the optimal balance between the quality and cost, and enhances the market competitiveness.