1999Microwave and Optical Technology LettersRequires access

Bandwidth enhancement of bow-tie microstrip antennas using integrated reactive loading

Kin‐Lu Wong, Jieh‐Sen Kuo

Open publisher page 16 citations

Abstract

By integrating a microstrip structure of cascaded microstrip-line sections into a bow-tie microstrip path, compact broadband operation of microstrip antennas can be obtained. The cascaded microstrip-line sections serve as a reactive load for the bow-tie patch, and its optimal dimensions for broadband operation have been experimentally determined in this study. The proposed antenna, with a patch linear dimension 15% smaller and an operating bandwidth two times larger, compared to a corresponding conventional rectangular microstrip antenna, has been implemented. Details of the experimental results are presented. ©1999 John Wiley & Sons, Inc. Microwave Opt Technol Lett 22: 69–71, 1999.

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What this paper is about

By integrating a microstrip structure of cascaded microstrip-line sections into a bow-tie microstrip path, compact broadband operation of microstrip antennas can be obtained. The cascaded microstrip-line sections serve as a reactive load for the bow-tie patch, and its optimal dimensions for broadband operation have been experimentally determined in this study. The proposed antenna, with a patch linear dimension 15% smaller and an operating bandwidth two times larger, compared to a corresponding conventional rectangular microstrip antenna, has been implemented. Details of the experimental results are presented. ©1999 John Wiley & Sons, Inc. Microwave Opt Technol Lett 22: 69–71, 1999.

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Available abstract

By integrating a microstrip structure of cascaded microstrip-line sections into a bow-tie microstrip path, compact broadband operation of microstrip antennas can be obtained. The cascaded microstrip-line sections serve as a reactive load for the bow-tie patch, and its optimal dimensions for broadband operation have been experimentally determined in this study. The proposed antenna, with a patch linear dimension 15% smaller and an operating bandwidth two times larger, compared to a corresponding conventional rectangular microstrip antenna, has been implemented. Details of the experimental results are presented. ©1999 John Wiley & Sons, Inc. Microwave Opt Technol Lett 22: 69–71, 1999.

Key concepts: Microstrip antenna, Microstrip, Patch antenna, Broadband, Bandwidth (computing), Folded inverted conformal antenna, Bow tie, Metamaterial antenna

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