arXiv:2603.03802math.NAcs.LG2026-03被引 3

自动设计物联网天线,用代理模型加速优化并提升带宽。

Unsupervised Surrogate-Assisted Synthesis of Free-Form Planar Antenna Topologies for IoT Applications

  • 用代理模型从自动生成的候选结构中筛选合适天线拓扑。
  • 在5-6GHz和6-7GHz频段实现带宽增强,满足物联网需求。
  • 适合需要快速生成高性能天线的工程师或自动化设计研究者。

物联网天线设计面临电性能与辐射要求的多重约束。传统人工设计易引入错误与偏见,而完全自动的设计方法则受限于几何搜索困难与高优化成本。本文提出一种变保真度框架,基于通用仿真模型生成自由形状天线拓扑,并利用代理辅助分类器从预生成的候选设计中识别合适结构。随后通过梯度优化引擎进行两阶段调优。该方法在六个数值实验中验证,针对5-6GHz与6-7GHz频段的宽带贴片天线实现了性能优化,且生成结构经广泛基准测试确认有效性。

原文摘要 · Abstract (English)

Design of antenna structures for Internet of Things (IoT) applications is a challenging problem. Contemporary radiators are often subject to a number of electric and/or radiation-related requirements, but also constraints imposed by specifics of IoT systems and/or intended operational environments. Conventional approaches to antenna design typically involve manual development of topology intertwined with its tuning. Although proved useful, the approach is prone to errors and engineering bias. Alternatively, geometries can be generated and optimized without supervision of the designer. The process can be controlled by suitable algorithms to determine and then adjust the antenna geometry according to the specifications. Unfortunately, automatic design of IoT radiators is associated with challenges such as determination of desirable geometries or high optimization cost. In this work, a variable-fidelity framework for performance-oriented development of free-form antennas represented using the generic simulation models is proposed. The method employs a surrogate-assisted classifier capable of identifying a suitable radiator topology from a set of automatically generated (and stored for potential re-use) candidate designs. The obtained geometry is then subject to a bi-stage tuning performed using a gradient-based optimization engine. The presented framework is demonstrated based on six numerical experiments concerning unsupervised development of bandwidth-enhanced patch antennas dedicated to work within 5 GHz to 6 GHz and 6 GHz to 7 GHz bands, respectively. Extensive benchmarks of the method, as well as the generated topologies are also performed.

天线设计自动优化代理模型物联网

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