This paper introduces the principle and structure of the cone antenna. Initially, a simulation model was established using CST STUDIO to analyze the impact of structural parameters of the cone antenna on the sensor's bandwidth, sensitivity, etc. The physical relationship between the sensor's frequency response characteristics and the structural parameters of the cone antenna, such as height, bottom width, electrode length, and electrode spacing, was obtained. Ultimately, the optimal structural parameters for the cone antenna were proposed.

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The Impact of Antenna Structure on the Performance of Integrated Optical Waveguide Pulsed Electric Field Sensor

  • Zhehao Wang,
  • Yinglong Diao,
  • Zhaozhi Long,
  • Wenting Li,
  • Kangmin Hu,
  • Jiawei Fan,
  • Yanling Sun

摘要

This paper introduces the principle and structure of the cone antenna. Initially, a simulation model was established using CST STUDIO to analyze the impact of structural parameters of the cone antenna on the sensor's bandwidth, sensitivity, etc. The physical relationship between the sensor's frequency response characteristics and the structural parameters of the cone antenna, such as height, bottom width, electrode length, and electrode spacing, was obtained. Ultimately, the optimal structural parameters for the cone antenna were proposed.