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Work-Energy Principle Based Characteristic Mode Theory for Yagi-Uda Array Antennas

Applied Physics 2021-09-21 v1 Classical Physics

Abstract

Work-energy principle (WEP) governing the work-energy transformation process of Yagi-Uda array antennas is derived. Driving power as the source to sustain a steady work-energy transformation is introduced. Employing WEP and driving power, the essential difference between the working mechanisms of scattering objects and Yagi-Uda array antennas is revealed. The difference exposes that the conventional characteristic mode theory (CMT) for scattering objects cannot be directly applied to Yagi-Uda array antennas. Under WEP framework, this paper proposes a generalized CMT for Yagi-Uda antennas. By orthogonalizing driving power operator (DPO), the WEP-based CMT can construct a set of energy-decoupled characteristic modes (CMs) for an objective Yagi-Uda antenna, and then can provide an effective modal analysis for the Yagi-Uda antenna. In addition, a uniform interpretation for the physical meaning of the characteristic values / modal significances (MSs) of metallic, material, and metal-material composite Yagi-Uda antennas is also obtained by employing the WEP-based modal decomposition and the field-current interaction expression of driving power.

Cite

@article{arxiv.2109.09453,
  title  = {Work-Energy Principle Based Characteristic Mode Theory for Yagi-Uda Array Antennas},
  author = {Ren-Zun Lian and Ming-Yao Xia and Xing-Yue Guo},
  journal= {arXiv preprint arXiv:2109.09453},
  year   = {2021}
}

Comments

arXiv admin note: substantial text overlap with arXiv:2103.01853

R2 v1 2026-06-24T06:08:07.643Z