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Sierpinski carpet fractal monopole antenna for ultra-wideband applications

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Microstrip antenna is broadly used in the modern communication system due to its significant features such as light weight, inexpensive, low profile, and ease of integration with radio frequency devices. The fractal shape is applied in antenna geometry to obtain the ultra-wideband antennas. In this paper, the sierpinski carpet fractal monopole antenna (SCFMA) is developed for base case, first iteration and second iteration to obtain the wideband based on its space filling and self-similar characteristics. The dimension of the monopole patch size is optimized to minimize the overall dimension of the fractal antenna. Moreover, the optimized planar structure is proposed using the microstrip line feed. The monopole antenna is mounted on the FR4 substrate with the thickness of 1.6 mm with loss tangent of 0.02 and relative permittivity of 4.4. The performance of this SCFMA is analyzed in terms of area, bandwidth, return loss, voltage standing wave ratio, radiation pattern and gain. The proposed fractal antenna achieves three different bandwidth ranges such as 2.6-4.0 GHz, 2.5-4.3 GHz and 2.4-4.4 GHz for base case, first and second iteration respectively. The proposed SCFMA is compared with existing fractal antennas to prove the efficiency of the SCFMA design. The area of the SCFMA is 25×20 mm<sup>2</sup>, which is less when compared to the existing fractal antennas.
Title: Sierpinski carpet fractal monopole antenna for ultra-wideband applications
Description:
Microstrip antenna is broadly used in the modern communication system due to its significant features such as light weight, inexpensive, low profile, and ease of integration with radio frequency devices.
The fractal shape is applied in antenna geometry to obtain the ultra-wideband antennas.
In this paper, the sierpinski carpet fractal monopole antenna (SCFMA) is developed for base case, first iteration and second iteration to obtain the wideband based on its space filling and self-similar characteristics.
The dimension of the monopole patch size is optimized to minimize the overall dimension of the fractal antenna.
Moreover, the optimized planar structure is proposed using the microstrip line feed.
The monopole antenna is mounted on the FR4 substrate with the thickness of 1.
6 mm with loss tangent of 0.
02 and relative permittivity of 4.
4.
The performance of this SCFMA is analyzed in terms of area, bandwidth, return loss, voltage standing wave ratio, radiation pattern and gain.
The proposed fractal antenna achieves three different bandwidth ranges such as 2.
6-4.
0 GHz, 2.
5-4.
3 GHz and 2.
4-4.
4 GHz for base case, first and second iteration respectively.
The proposed SCFMA is compared with existing fractal antennas to prove the efficiency of the SCFMA design.
The area of the SCFMA is 25×20 mm<sup>2</sup>, which is less when compared to the existing fractal antennas.

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