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Modern wireless systems are placing greater emphasis on antenna designs for future development in communication technology because of antenna being the key element in the whole communication system. The microstrip antenna in a system serves as the transducer between the controlled energy residing within the system and the radiated energy existing in free space. This antenna is very good for wireless communication due to it’s light weight, low volume and low profile planer configuration which can be easily made conformal to host surface. Additionally, some of it’s characteristics like low fabrication cost, supportive nature for both linear and circular polarization, and low sensitivity to manufacturing tolerance make this antenna very important for next generation. However, a major disadvantage of this type of antenna is that it has very narrow band width. In this paper, we remove such type of disadvantage of rectangular microstrip antenna by adding a PBG structure. We first describe briefly the properties of the microstrip antenna & photonic band gap structure and after this we design a rectangular microstrip antenna with PBG structure using cavity model method. Then the results are simulated with IE3D based on MOM method. At the end, we compare the simulated and measured results. We find that the bandwidth of microstrip antenna is enhanced by adding a PBG structure .
Dr.Kapil Goswami, Birbal Singh, ASHUTOSH DUBEY, gisrish5111. 1970. "Design and Analysis of Rectangular Microstrip Antenna with PBG Structure for Enhancement of Bandwidth". Global Journal of Research in Engineering - F: Electrical & Electronic GJRE-F Volume 11 (GJRE Volume 11 Issue F2).
Crossref Journal DOI 10.17406/gjre
Print ISSN 0975-5861
e-ISSN 2249-4596
v1.2
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Total Score: 108
Country: India
Subject: Global Journal of Research in Engineering
Authors: Dr.Kapil Goswami, Ashutosh Dubey, Girish Chandra Tripathi and Birbal Singh (PhD/Dr. count: 1)
View Count (all-time): 281
Total Views (Real + Logic): 6858
Total Downloads (simulated): 440
Publish Date: 2011 02, Thu
Monthly Totals (Real + Logic):
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