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Multiobjective patch antenna design by using achievement scalarization function with nonlinear programming algorithm

机译:具有非线性编程算法的成就标准功能的多目标贴片天线设计

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Achievement scalarization function is one of the method for converting the multiobjective problem into a single objective one. The differences of this methodology among the similar scalarization approaches are its performance and utilization of the reference point set on objective space which is preferred on modern (especially many objective problems) optimization algorithms. Since it is possible to use various optimization algorithms with this scalarization method, in this study a classical (also well-known and relatively complicated) optimization algorithm as a part of nonlinear programming called sequential quadratic programming is preferred. The analysis initially is started by applying this method into two benchmark problems to show the performance of this scalarization function on convex and concave problems and then the idea is applied to optimize the patch antenna problem as a multiobjective real-world optimization problem. The results show that not only the satisfactory performance obtained from classical optimization algorithm but also the method allows the researchers to select different levels of the substrate thickness of the patch antenna which is a critical issue for joining the simulation results into implementation phase.
机译:成就标准化功能是将多目标问题转换为单个物镜的方法之一。这种方法在类似的标准化方法中的差异是它的性能和利用所设置的参考点,该参考点在现代(特别是许多客观问题)优化算法上是优选的。由于可以使用这种标定方法使用各种优化算法,因此在该研究中,优选作为称为顺序二次编程的非线性编程的一部分的经典(也是众所周知的和相对复杂的)优化算法。最初通过将该方法应用于两个基准问题来开始分析,以显示在凸面和凹面问题上的这种标定功能的性能,然后应用了这个想法,以优化修补天线问题作为多目标实际优化问题。结果表明,不仅从经典优化算法获得的令人满意的性能,而且允许研究人员选择贴片天线的基板厚度的不同水平,这是将模拟结果加入实施阶段的关键问题。

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