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Mobile QR Code QR CODE : The Transactions of the Korean Institute of Electrical Engineers
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Title Design of the Flat Metamaterial Lens to Improve Signal Strengths of the Antenna for K-Band Satellite Communication and Observation of its Frequency Response
Authors 서성부(Seongbu Seong) ; 김우곤(Woogon Kim) ; 서예준(Yejune Seo) ; 박도현(Dohyun Park) ; 김형종(Hyoungjong Kim) ; 이권희(Kwonhee Lee) ; 이호섭(Hosub Lee) ; 강승택(Sungtek Kahng)
DOI https://doi.org/10.5370/KIEE.2024.73.12.2318
Page pp.2318-2325
ISSN 1975-8359
Keywords Antennas; Metamaterial; Signal strength; Transmission; Antenna gain; Flat lens antenna; Antenna simulation
Abstract Satellite communication requires a long-distance wireless link, which necessitates a sufficiently high gain from the antenna, the entry point of a wireless communication device. Array antennas, commonly used to achieve high gain, face challenges such as cumulative metal and dielectric losses in the feed system and large physical volume. The use of optical curved lenses for high gain at millimeter-wave frequencies has been proposed, but such lenses have drawbacks, including large volume, as well as high manufacturing, installation, and maintenance costs. This paper addresses the design of a planar metasurface lens capable of amplifying millimeter-wave signal strength, serving as an alternative to array antennas and curved lenses. A planar lens with a 100 mm × 100 mm area that enhances the radiation gain of K-band antennas, a representative frequency range for satellite communication, by more than 9 dB is implemented. To verify the design, the radiation characteristics of the source antenna combined with the metasurface lens are measured and analyzed using a Vector Network Analyzer (VNA) and an Anechoic Chamber.
Observations of the proposed antenna's frequency response characteristics demonstrate that the antenna gain increases by more than 10 dB in the K-band, and the beamwidth narrows, indicating high directivity.