2013IEEE Antennas and Wireless Propagation LettersRequires access

Miniaturization of Slot Antennas Using Wire Loading

Bratin Ghosh, S. Haque, Nageswara Rao Yenduri

Open publisher page 42 citations

Abstract

The design of a miniaturized slot antenna based on wire-loading is presented. The miniaturization can be achieved with minimal increase in the lateral space along the slot width. Both the cases of a slot antenna on dielectric substrate and a slot antenna on ground plane are considered. For the former case, a miniaturization of 28.83% is achieved. The radiation characteristics of the size-reduced antenna are almost similar to the unloaded slot, with low cross-polarization levels. For the slot antenna on a ground plane, the miniaturization is affected by a cavity-backed design with the loading wires penetrated into the cavity. A 45.52% reduction in resonant frequency is achieved relative to the unloaded slot. The radiation characteristics in the upper hemisphere are almost unperturbed compared to the unloaded slot.

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What this paper is about

The design of a miniaturized slot antenna based on wire-loading is presented. The miniaturization can be achieved with minimal increase in the lateral space along the slot width. Both the cases of a slot antenna on dielectric substrate and a slot antenna on ground plane are considered. For the former case, a miniaturization of 28.83% is achieved. The radiation characteristics of the size-reduced antenna are almost similar to the unloaded slot, with low cross-polarization levels. For the slot antenna on a ground plane, the miniaturization is affected by a cavity-backed design with the loading wires penetrated into the cavity. A 45.52% reduction in resonant frequency is achieved relative to the unloaded slot. The radiation characteristics in the upper hemisphere are almost unperturbed compared to the unloaded slot.

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Available abstract

The design of a miniaturized slot antenna based on wire-loading is presented. The miniaturization can be achieved with minimal increase in the lateral space along the slot width. Both the cases of a slot antenna on dielectric substrate and a slot antenna on ground plane are considered. For the former case, a miniaturization of 28.83% is achieved. The radiation characteristics of the size-reduced antenna are almost similar to the unloaded slot, with low cross-polarization levels. For the slot antenna on a ground plane, the miniaturization is affected by a cavity-backed design with the loading wires penetrated into the cavity. A 45.52% reduction in resonant frequency is achieved relative to the unloaded slot. The radiation characteristics in the upper hemisphere are almost unperturbed compared to the unloaded slot.

Key concepts: Miniaturization, Slot antenna, Ground plane, Antenna (radio), Materials science, Optoelectronics, Dielectric, Optics

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