This journal presents a pioneering self-complimentary curvature-based simple planar antenna engineered for an extensive working frequency range of 12–42 GHz, encompassing the Ku, K, and Ka bands. Noteworthy for its gain of 12.5 dB and exceptional efficiency of 91% throughout the entire frequency band, the antenna's design showcases a harmonious blend of high performance and simplicity. The speciality of this antenna lies in its ability to provide consistent and robust performance metrics across the broad frequency spectrum, making it particularly suitable for advanced communication applications. Its planar geometry and self-complimentary curvature contribute to easy integration and manufacturing scalability. The antenna’s gain and efficiency attributes make it an optimal choice for high-speed data transmission, satellite communication, and radar systems operating in the Ku, K, and Ka bands.

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Advancements in Curvature Optimization for Millimeter-Wave Antennas in Cutting-Edge Communication Systems

  • Sneha Tiwari,
  • S. Pal

摘要

This journal presents a pioneering self-complimentary curvature-based simple planar antenna engineered for an extensive working frequency range of 12–42 GHz, encompassing the Ku, K, and Ka bands. Noteworthy for its gain of 12.5 dB and exceptional efficiency of 91% throughout the entire frequency band, the antenna's design showcases a harmonious blend of high performance and simplicity. The speciality of this antenna lies in its ability to provide consistent and robust performance metrics across the broad frequency spectrum, making it particularly suitable for advanced communication applications. Its planar geometry and self-complimentary curvature contribute to easy integration and manufacturing scalability. The antenna’s gain and efficiency attributes make it an optimal choice for high-speed data transmission, satellite communication, and radar systems operating in the Ku, K, and Ka bands.