Metamaterial for planar antenna / editor Mohammad Tariqul Islam.

Other author Islam, Mohammad Tariqul, 1975
Format Electronic
EditionFirst edition.
Publication InfoBoca Raton : CRC Press/Taylor & Francis Group, 2025.
Descriptionviii, 264 pages illustrations 25 cm
Supplemental ContentFull text available from eBooks on EBSCOhost
Subjects

Physical mediumillustrations
Abstract "Metamaterial-loaded antennas significantly improved antenna performance, particularly in the mmWave antenna design. Currently, researchers tend to develop the aspects of mmWave fifth generation (5G) antenna design and propagation for telecommunications, military, industrial and commercial applications. Metamaterials can be used to design antennas that are significantly smaller than traditional antennas operating at the same frequency. This is particularly useful for compact and low-profile antenna designs, such as those in mobile devices and satellite communication systems. It can be used to enhance the gain of an antenna by shaping the radiation pattern and focusing the energy in the desired direction. Metamaterial lenses, superstrate layers, or reflectors can be employed to improve the directivity and gain of the antenna while minimizing energy loss in unwanted directions. High-gain antenna is especially valuable for long-distance communication and radar systems. The choice of which metamaterial approach to use depends on the specific requirements of the antenna system, such as frequency, bandwidth, and radiation pattern. Moreover, Metamaterials can be integrated into antennas to enable precise beam tilting without the need for physically moving the antenna, which is crucial in wireless communication. Most impritantly, Metamaterials can be used to reduce electromagnetic interference and enhance the isolation between antennas in close proximity, which is important for reducing co-channel interference in wireless communication systems. One way to achieve high isolation is by using metamaterial-based structures that absorb or redirect electromagnetic waves, preventing them from interfering with neighbouring antennas. These structures can be positioned between the antennas to minimize mutual coupling and crosstalk. Finaly, Metamaterials enable the design of antennas in unconventional shapes and configurations, allowing for more efficient use of available space and improved performance in non-standard applications"-- Provided by publisher.
Bibliography noteIncludes bibliographical references and index.
Access restrictionAvailable only to authorized users.
Technical detailsMode of access: World Wide Web
Genre/formElectronic books.
LCCN 2025003350
ISBN9781032832814 hardcover
ISBN9781032851327 paperback
ISBNebook

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