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Microstrip patch antenna array at 3.8 GHz for WiMax and UAV applications
44
Citations
4
References
2014
Year
Unknown Venue
EngineeringAntenna TestingRadio EngineeringMicrowave TransmissionAntennaAntenna DesignMicrowave AntennaComputer Simulation ToolUav ApplicationsSmart AntennaReturn LossComputational ElectromagneticsRadiation PatternMicrowave EngineeringMultiband AntennasElectromagnetic Compatibility
This paper presents the design of a rectangular microstrip line-fed patch antenna array with a centre frequency of 3.8 GHz for WiMAX and Unmanned Air Vehicle (UAV) applications. A single element, 1×2 and 2×2 microstrip rectangular patch antennas were designed and simulated in Computer Simulation Tool (CST) Microwave Studio environment. The results of designed antennas were compared in terms of Return Loss (S11 parameters), bandwidth, directivity, gain and radiation pattern. Compared to traditional microstrip antennas the proposed array structure achieved a gain and directivity of 13.2 dB and 13.5 dBi respectively. The antenna was fabricated using Rogers Duroid RT-5880 substrate with a dielectric constant e <sub xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">r</sub> of 2.2 and a thickness of 1.574 mm respectively. The array antennas were measured in the laboratory using Vector Network Analyser (VNA) and the results show good agreement with the array antenna simulation.
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