This article presents a small antenna design for WLAN/IEEE 802.11 b/g communication. In CST Studio, an iterative method is used to design and simulate the radiator. An FR-4 substrate measuring 10 × 10 × 1.5 cubic millimetres is used in the designed antenna. With a bandwidth of 16% and a minimum reflection coefficient of − 10 dBi, the antenna can operate between 2.23 and 2.62 GHz. The suggested antenna boasts an impressive return loss of − 50 dBi with a central frequency of 2.42 GHz. The suggested antenna works with Bluetooth and 2.4 GHz Wi-Fi Aerospace (IoT).

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Optimised Printed Antenna for Aerospace IoT Wireless Connectivity

  • Jay Jivani,
  • Sidharth Sharma,
  • Manish Varun Yadav,
  • Swati Varun Yadav,
  • Dinesh Yadav,
  • Tanweer Ali

摘要

This article presents a small antenna design for WLAN/IEEE 802.11 b/g communication. In CST Studio, an iterative method is used to design and simulate the radiator. An FR-4 substrate measuring 10 × 10 × 1.5 cubic millimetres is used in the designed antenna. With a bandwidth of 16% and a minimum reflection coefficient of − 10 dBi, the antenna can operate between 2.23 and 2.62 GHz. The suggested antenna boasts an impressive return loss of − 50 dBi with a central frequency of 2.42 GHz. The suggested antenna works with Bluetooth and 2.4 GHz Wi-Fi Aerospace (IoT).