Optimization of the ground plane by size variation of E-shaped patch antenna for energy harvesting at GSM-900

Research output: Contribution to journalArticle

Abstract

The optimization of ground plane by size variation of E-shaped patch antenna for RF energy harvesting system is presented and discussed in this study. The variation of this ground plane by size variation was tested to demonstrate the effects of return loss and impedance bandwidth on the patch antenna to enhance its RF energy reception capabilities. The antenna was modeled and simulated in the ADS 2009 environment for downlink radio frequency band of GSM-900, showed an impedance bandwidth of 30.26% (285 MHz) and return loss of -39.99 dB at 941.7 MHz.

Original languageEnglish
Pages (from-to)1209-1214
Number of pages6
JournalResearch Journal of Applied Sciences, Engineering and Technology
Volume7
Issue number7
Publication statusPublished - 2014

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Antenna grounds
Energy harvesting
Global system for mobile communications
Microstrip antennas
Bandwidth
Frequency bands
Antennas

All Science Journal Classification (ASJC) codes

  • Computer Science(all)
  • Engineering(all)

Cite this

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abstract = "The optimization of ground plane by size variation of E-shaped patch antenna for RF energy harvesting system is presented and discussed in this study. The variation of this ground plane by size variation was tested to demonstrate the effects of return loss and impedance bandwidth on the patch antenna to enhance its RF energy reception capabilities. The antenna was modeled and simulated in the ADS 2009 environment for downlink radio frequency band of GSM-900, showed an impedance bandwidth of 30.26{\%} (285 MHz) and return loss of -39.99 dB at 941.7 MHz.",
author = "Devi, {K. K.A.} and {Md Din}, Norashidah and {Kumar Chakrabarty}, Chandan",
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AB - The optimization of ground plane by size variation of E-shaped patch antenna for RF energy harvesting system is presented and discussed in this study. The variation of this ground plane by size variation was tested to demonstrate the effects of return loss and impedance bandwidth on the patch antenna to enhance its RF energy reception capabilities. The antenna was modeled and simulated in the ADS 2009 environment for downlink radio frequency band of GSM-900, showed an impedance bandwidth of 30.26% (285 MHz) and return loss of -39.99 dB at 941.7 MHz.

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