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Minimizing the Reflection of Waves by Surface Impedance Using Boundary Elements and Global Optimization

机译:利用边界元素和全局优化最小化表面阻抗对波的反射

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This reprint considers the problem of minimizing the scattered field intensity with respect to the boundary impedance. Usual optimization procedures based on gradient type local minimization algorithms will not be effective for this problem because the scattered field intensity is not a convex function of the impedance, and it has many local extrema. The problem is approached here by first discretizing the Helmholtz partial differential equation using the boundary element method. Then some recently developed global optimization algorithms are applied to find approximate distributions of the boundary impedance for particular shapes which minimize the reflected field intensity. The boundary element method effects a reduction of dimensionality resulting in much greater computational efficiency. The global optimization algorithm allows us to pick out nearly global minimum solutions among many local minima. Numerical solutions are represented graphically and discussed. Our results show that a variable boundary impedance is much more effective for minimizing the scattered field than a constant boundary impedance. (jhd)

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