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A feasible method for synthesizing millimeter-wave conical array and optimizing low cross-polarization is proposed.Starting from the far-field superposition principle,an efficient approach including element mutual coupling and mounted platform effects is used to calculate the far-field patterns.A coordinate transform is applied to create polarization quantities,and a general process for the element polarized pattern transformation is performed.Corresponding numerical example is given and the desired sidelobe level and low cross-polarization are optimized.The numerical results indicate the proposed method is valid.
A feasible method for synthesizing millimeter-wave conical array and optimizing low cross-polarization is proposed. Starting from the far-field superposition principle, an efficient approach including element mutual coupling and mounted platform effects is used to calculate the far-field patterns. A coordinate transform is applied to create polarization quantities, and a general process for the element polarized pattern transformation is performed. Volume response numerical examples are given and the desired sidelobe level and low cross-polarization are optimized.