English

Fundamental limitations for antenna radiation efficiency

Classical Physics 2018-06-13 v6

Abstract

Small volume, finite conductivity and high frequencies are major imperatives in the design of communications infrastructure. The radiation efficiency ηr\eta_r impacts on the optimal gain, quality factor, and bandwidth. The current efficiency limit applies to structures confined to a radian sphere kaka (kk is the wave number, aa is the radius). Here we present new absolute limits to ηr\eta_r for arbitrary antenna shapes based on k2Sk^2S where SS is the conductor surface area. For a dipole with an electrical length of 10510^{-5} our result is four orders of magnitude closer to the analytical solution when compared with previous bounds on the efficiency. The improved bound on ηr\eta_r is more accurate, more general, and easier to calculate than other limits. The efficiency of an antenna cannot be larger than the case where the surface of the antenna is 'peeled' off and assembled into a planar sheet with area SS, and a uniform current is excited along the surface of this sheet.

Cite

@article{arxiv.1609.01761,
  title  = {Fundamental limitations for antenna radiation efficiency},
  author = {Morteza Shahpari and David V. Thiel},
  journal= {arXiv preprint arXiv:1609.01761},
  year   = {2018}
}

Comments

Minor edits 8 pages, 8 figures, 1 appendix, Accepted in IEEE TAP

R2 v1 2026-06-22T15:41:54.730Z