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April 19, 2026AIP Advances0 citationsOpen Access

Polynomial attenuation window function for microwave propagation in evaporation ducts using the parabolic equation method

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JHJinyi HuiHWHongguang WangCLChunliang Liu

Key Points

  • To improve simulation accuracy for microwave propagation in evaporation ducts using a new window function.
  • Utilized the parabolic equation method for simulations.
  • Developed a novel Polynomial Attenuation (PA) window function.
  • Examined the effects of upper boundary conditions on microwave propagation.
  • The PA window reduces maximum relative error by at least 10 dB compared to conventional window functions.
  • Demonstrated effective suppression of boundary reflections at a higher attenuation value of ∼0.8.
  • Showed applicability in various complex propagation scenarios.

Abstract

This paper employs the parabolic equation method to investigate the influence of upper boundary conditions on microwave propagation in evaporation ducts, with the aim of improving simulation accuracy for long-distance wireless power transfer. A novel window function termed Polynomial Attenuation (PA) is proposed, exhibiting an attenuation behavior distinct from that of conventional window functions. Unlike traditional approaches that require the window function to decay to nearly zero at the truncation boundary, the proposed function is shown to effectively suppress boundary reflections even when its value remains at ∼0.8. Numerical results demonstrate that under various simulation conditions, the PA window reduces the maximum relative error by at least 10 dB compared with conventional window functions, thereby improving simulation accuracy and indicating its applicability to a range of complex propagation scenarios.

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Cite This Study

Hui et al. (2026) studied this question.

synapsesocial.com/papers/69e471ef010ef96374d8e244https://doi.org/10.1063/5.0314031
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