Classical gradient-based density topology optimization is adapted for method-of-moments numerical modeling to design a conductor-based system attaining the minimal antenna Q-factor evaluated via an energy stored operator. Standard topology optimization features are discussed, e.g., the interpolation scheme and density and projection filtering. The performance of the proposed technique is demonstrated in a few examples in terms of the realized Q-factor values and necessary computational time to obtain a design. The optimized designs are compared to the fundamental bound and well-known empirical structures. The presented framework can provide a completely novel design, as presented in the second example.
翻译:经典的梯度优化技术已经应用于矩量法数值建模,设计了一个基于导体的系统,通过存储的能量算子来实现最小化天线Q因数。讨论了标准的拓扑优化特点,例如插值方案,密度和投影滤波器。通过几个示例展示了所提出的技术的性能,包括实现的Q因数值和获得设计所需的计算时间。优化设计与基本限制和众所周知的经验结构进行了比较。所提出的框架可以提供完全新颖的设计,如第二个例子所示。