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Design of a compact narrowband microstrip patch antenna using multilateral slots for radar applications
Salele, Nafiu1, Rafukka, Sagir Iliyasu2, Abdulkadir, Mukhtar3, Abdullahi, Suleiman Shuaibu4.
The fascinating features of microstrip patch antenna such as lightweight, low cost and low-profile planar configuration, which account for easy fabrication, led to its gaining popularity in the recent past. However, designers are struggling to overcome its major demerits such as low gain, low directivity and low efficiency. The most common option for the parameter improvement was the use of parasitic patches, increased substrate height or implementation of antenna array, all of which results in cumbersome design. This article presents a single element narrowband microstrip patch antenna, for radar applications. The radiating patch of the antenna was mounted on Flame Retardant Circuit Board (FR-4), and fed with 50Ω microstrip feedline, using edge-feeding technique. Multilateral slots were cut on the patch for better impedance matching and gain enhancement. The total dimension of the patch was 15.8x11.5mm2 . Simulation results using Finite Element Method shows that, the proposed antenna operates at a resonant frequency of 8.5GHz, with a bandwidth of 200MHz. The antenna exhibits a good reflection coefficient of -40.35dB, very low VSWR of 1.02. and a maximum gain of 6.4dB at the same resonant frequency. Efficiency of the antenna was also improved to 99%. Comparison of the proposed antenna with previously reported literature indicated that, the proposed antenna is the best candidate for specific Radar applications.
Affiliation:
- Islamic University of Technology, Bangladesh
- Al-Qalam University Katsina, Nigeria
- Al-Qalam University Katsina, Nigeria
- Al-Qalam University Katsina, Nigeria
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