Wireless Communication Using Dual Antenna Arrays - The Springer International Series in Engineering and Computer Science 529 (Paperback)
  • Wireless Communication Using Dual Antenna Arrays - The Springer International Series in Engineering and Computer Science 529 (Paperback)
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Wireless Communication Using Dual Antenna Arrays - The Springer International Series in Engineering and Computer Science 529 (Paperback)

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£109.99
Paperback 128 Pages / Published: 26/04/2013
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At present, the expansion of tetherless communications is a technological trend surpassed perhaps only by the explosive growth of the Internet. Wireless systems are being deployed today mainly for telephony, satisfying the ind- trialized nations' appetite for talk-on-the-go, and providing much-needed communications infrastructure in developing countries. The desire for wi- less access to the Internet is starting to add fuel to the growth of tetherless communications. Indeed, the synergy of wireless and Internet technologies will lead to a host of exciting new applications, some of which are not yet envisioned. Future-generation wireless systems will achieve capacities much higher than the systems of today by incorporating myriad improvements. These in- vations include transmission in higher-frequency bands, "smart antennas", multi-user detection, new forward error-correction techniques, and advanced network resource-allocation techniques. The term "smart antenna" usually refers to the deployment of multiple antennas at the base-station site, coupled with special processing of the m- tiple received signals. Smart antennas can adaptively reject co-channel int- ference and mitigate multipath fading, and have been identified by many as a promising means to extend base-station coverage, increase system capacity and enhance quality of service.

Publisher: Springer-Verlag New York Inc.
ISBN: 9781475784275
Number of pages: 128
Weight: 237 g
Dimensions: 235 x 155 x 8 mm
Edition: Softcover reprint of the original 1st ed. 200


MEDIA REVIEWS
`I recommend this book highly.'
Joseph M. Kahn, University of California, Berkeley

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