Jyoti Jadhav - Academia.edu (original) (raw)

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Papers by Jyoti Jadhav

Research paper thumbnail of Design of Hexagonal Fractal Multiband Antenna with Parametric Analysis

With the rapid evolution in wireless communication systems and increasing importance next generat... more With the rapid evolution in wireless communication systems
and increasing importance next generation wireless
applications, wideband and low profile antennas are in great
demand for both commercial and military applications. The
need of multiband, larger gain and low profile antennas to
support multiple wireless applications led to the design of
Fractal Antennas. Fractal antennas due to their self-similar
design take less area and are thus low profile. Further they can
obtain radiation pattern and input impedance similar to a
larger multiband antennas.
This paper presents the design of hexagonal fractal antenna up
to third iteration. The proposed antenna is designed on FR4
substrate with dielectric constant of 4.4 and fed with 50 ohms
microstrip line. By optimizing the width microstrip feed and
its location the antenna can be optimized to operate in multiple
bands between 1-5GHz

Research paper thumbnail of Design of Hexagonal Fractal Multiband Antenna with Parametric Analysis

With the rapid evolution in wireless communication systems and increasing importance next generat... more With the rapid evolution in wireless communication systems
and increasing importance next generation wireless
applications, wideband and low profile antennas are in great
demand for both commercial and military applications. The
need of multiband, larger gain and low profile antennas to
support multiple wireless applications led to the design of
Fractal Antennas. Fractal antennas due to their self-similar
design take less area and are thus low profile. Further they can
obtain radiation pattern and input impedance similar to a
larger multiband antennas.
This paper presents the design of hexagonal fractal antenna up
to third iteration. The proposed antenna is designed on FR4
substrate with dielectric constant of 4.4 and fed with 50 ohms
microstrip line. By optimizing the width microstrip feed and
its location the antenna can be optimized to operate in multiple
bands between 1-5GHz

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