High-Gain Broadband Antennas for 60-GHz Short-Range Wireless Communications

High-Gain Broadband Antennas for 60-GHz Short-Range Wireless Communications

Osama Haraz, Sultan Almorqi, Abdel-Razik Sebak, Saleh A. Alshebeili
ISBN13: 9781466686458|ISBN10: 1466686456|EISBN13: 9781466686465
DOI: 10.4018/978-1-4666-8645-8.ch003
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MLA

Haraz, Osama, et al. "High-Gain Broadband Antennas for 60-GHz Short-Range Wireless Communications." Wideband, Multiband, and Smart Reconfigurable Antennas for Modern Wireless Communications, edited by Mohammad A. Matin, IGI Global, 2016, pp. 72-122. https://doi.org/10.4018/978-1-4666-8645-8.ch003

APA

Haraz, O., Almorqi, S., Sebak, A., & Alshebeili, S. A. (2016). High-Gain Broadband Antennas for 60-GHz Short-Range Wireless Communications. In M. Matin (Ed.), Wideband, Multiband, and Smart Reconfigurable Antennas for Modern Wireless Communications (pp. 72-122). IGI Global. https://doi.org/10.4018/978-1-4666-8645-8.ch003

Chicago

Haraz, Osama, et al. "High-Gain Broadband Antennas for 60-GHz Short-Range Wireless Communications." In Wideband, Multiband, and Smart Reconfigurable Antennas for Modern Wireless Communications, edited by Mohammad A. Matin, 72-122. Hershey, PA: IGI Global, 2016. https://doi.org/10.4018/978-1-4666-8645-8.ch003

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Abstract

This chapter introduces design and implementation of high-gain broadband antennas for 60-GHz short-range communications. It presents different antenna configurations and architectures that can be good candidates for the 60-GHz industrial, scientific and medical (ISM) band. Printed dipole array (PDA) antennas and especially the Printed log-periodic dipole array (PLPDA) antennas will be discussed in this chapter. Loading these kind of antennas with low-cost spherical or hemispherical dielectric lenses will also be presented and demonstrated to increase the gain of the antenna. Another type of antennas called electromagnetically coupled (EMC) elliptical patch antenna arrays will be investigated. Antipodal Vivaldi antenna and corrugated antipodal Vivaldi antenna are also introduced as good candidates for 60-GHz short-range communication applications.

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