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Reseach Article

Designing a dual ISM band implantable antenna for medical monitoring applications using Dy- Sm doped magnesium Nano Ferrite material

by P.deepa, R. Abdul Sikkandhar, Helina Rajini Suresh, Vasant Naidu
International Journal of Computer Applications
Foundation of Computer Science (FCS), NY, USA
Volume 44 - Number 12
Year of Publication: 2012
Authors: P.deepa, R. Abdul Sikkandhar, Helina Rajini Suresh, Vasant Naidu
10.5120/6312-8648

P.deepa, R. Abdul Sikkandhar, Helina Rajini Suresh, Vasant Naidu . Designing a dual ISM band implantable antenna for medical monitoring applications using Dy- Sm doped magnesium Nano Ferrite material. International Journal of Computer Applications. 44, 12 ( April 2012), 1-4. DOI=10.5120/6312-8648

@article{ 10.5120/6312-8648,
author = { P.deepa, R. Abdul Sikkandhar, Helina Rajini Suresh, Vasant Naidu },
title = { Designing a dual ISM band implantable antenna for medical monitoring applications using Dy- Sm doped magnesium Nano Ferrite material },
journal = { International Journal of Computer Applications },
issue_date = { April 2012 },
volume = { 44 },
number = { 12 },
month = { April },
year = { 2012 },
issn = { 0975-8887 },
pages = { 1-4 },
numpages = {9},
url = { https://ijcaonline.org/archives/volume44/number12/6312-8648/ },
doi = { 10.5120/6312-8648 },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Journal Article
%1 2024-02-06T20:35:19.228233+05:30
%A P.deepa
%A R. Abdul Sikkandhar
%A Helina Rajini Suresh
%A Vasant Naidu
%T Designing a dual ISM band implantable antenna for medical monitoring applications using Dy- Sm doped magnesium Nano Ferrite material
%J International Journal of Computer Applications
%@ 0975-8887
%V 44
%N 12
%P 1-4
%D 2012
%I Foundation of Computer Science (FCS), NY, USA
Abstract

In this paper we have introduced Dy Sm Ferrite coated on RT DUROID5880 as substrate for an effective constituent to have a patch antenna. Here Dy Sm Ferrite was coated over RT DUROID 5880 with dielectric constant of 1. 6 and loss tangent of 0. 025. This combination forms a new substrate for implantable micro strip patch antenna design. The antenna is optimized for dual-band operation by combining an in-house finite-element boundary integral electromagnetic simulation code and particle swarm optimization algorithm. The simulation was performed using IE3D simulator for a frequency range of 2. 45 GHz and 5. 8 GHz dual ISM Band for medical monitoring applications. The Return loss Was in 2. 45Ghz -11. 99dB, and 5. 8 GHz -20. 37 dB, VSWR values are 1. 7266, 2. 45Ghz and 1. 2415 for 5. 8 GHz, the Directivity came to be 8. 44dBi, these simulated results were encouraging

References
  1. M A Jacob. John, Khadar, Lonappan. Anil and K. T Mathew, Microwave dielectric properties of nano structured nickel ferrite, Bull, Mater. Sci,31- 6. (2008) pp. 847-851.
  2. Vasant Naidu, S. K. A. Ahamed KanduSahib, M. SheikDawood, M. Suganthi; Magnetic Properties of Nano Crystalline Nickel, Samariumdoped Zinc Ferrite ,International Journal of Computer Applications,24–2,(June 2011),pp. 0975 – 8887.
  3. Vasant Naidu, S. K. A. Ahamed KanduSahib,M. SheikDawood, M. Suganthi; Magnetic Properties of Nano Crystalline Nickel, Cerium doped Zinc Ferrite , International Journal of Nano tech and Nano Sci in press.
  4. Vasant Naidu et. al "Mg Sm Ferrite for Nano structured E-Shaped Patch Antenna studies" Int. J. Com. Appl, Volume 30– No. 5,pp 45-50, Sept 2011.
  5. A. T Raghavendera. , Damir Pajic, kreso Zadro,Tomislav Milekovic, Venkateshwar Rao. P. Jadhav K M and Ravinder D,Synthesis and Magnetic properties of NiFe2-xAlxO4 nano particles, Mag J and Mag Mat, 1 (2007). Pp 316.
  6. Burke P. J, S. Li and Z. Yu, Quantitative theory of nanowire and nanotube antenna performance Nanotechnology, IEEE transactions on, 2006, 5(4); p314-334.
  7. Demoustier, S. , et al. , Review of two microwave applications of carbon nanotubes: nano-antennas and nano-switches. Comptes Rendus Physique, 2008. 9(1): p. 53-66.
  8. Ahmed H. Reja "Study of Micro Strip Feed Line Patch Antenna", Antennas and Propagation International Symposium, vol. 27, pp. 340-342 December 2008.
  9. Sahntanu Kumar Behera and Y. Choukiker, "Design and Optimization of Dual Band Micro Strip Antenna Using Practicle Swarm Optimization Technique," in Springer Science+Business Media, LLC, pp. 1346-1354, 2010.
  10. A. A. Deshmukh and G. Kumar, "Compact broadband gap-coupled shorted L-shaped microstrip antennas," in IEEE Antennas and Propagation International Symposium, vol 1, (Baltimore, Maryland), pp. 106–109, IEEE, July 2001.
  11. Z. M. Chen and Y. W. M. Chial, "Broadband probe-fed Lshaped plate antenna," Microwave and Optical Technology Letters, vol. 26, pp. 204–206, 1985.
  12. D. Wessels, "Implantable pacemakers and defibrillators: Device overview and EMI considerations," in IEEE Electromagnetic Compatibility Int. Symp. , vol. 2, 2002, pp. 911–915.
  13. J. Kim and Y. Rahmat-Samii, "An implantable antenna in the spherical human head: SAR and communication link performance," presented at the IEEE Topical Wireless Communication Technology Conf. , Oct 2003.
  14. W. Xia, K. Saito, M. Takahashi, and K. Ito, "Performances of an implanted cavity slot antenna embedded in the human arm," IEEE Trans. Antennas Propag. , vol. 57, pp. 894–899, Apr. 2009
Index Terms

Computer Science
Information Sciences

Keywords

Ie3d Simulator Rt Duroid Nano Ferrite Materials Micro Strip Patch Antenna Implantable Antenna