Searched for: %2520
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Tran, D. (author), Haider, N. (author), Aubry, P. (author), Szilagyi, A. (author), Lager, I.E. (author), Yarovoy, A. (author), Ligthart, L.P. (author)
The number of topside shipboard antennas doubled every decade; in 1990s they were close to 200 and have no sight of stop growing (Tavik, 2005). The over-crowded present of such many topside antennas in a limited-space of littoral warfare ship has created/caused many critical, unavoidable problem like antenna blockage, electromagnetic...
book chapter 2011
document
Savelyev, T. (author), Zhuge, X. (author), Yang, B. (author), Aubry, P. (author), Yarovoy, A. (author), Ligthart, L. (author), Levitas, B. (author)
This paper presents an experimental investigation of two approaches to short-range radar imaging at microwaves by means of ultra-wideband (UWB) technology. The first approach represents a classical synthetic aperture radar (SAR) that employs a transmit–receive antenna pair on mechanical scanner. The second one makes use of a multiple input...
journal article 2010
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Irahhauten, Z. (author), Dacuna, J. (author), Janssen, G.J.M. (author), Nikookar, H. (author), Yarovoy, A.G. (author), Ligthart, L.P. (author)
Ultrawideband (UWB) technology is an attractive alternative for short-range applications, e.g., wireless personal area networks. In these applications, transmit and receive antennas are very close to each other and the far-field condition assumed in most of the link budget models may not be satisfied. Under near-field conditions, variations in...
journal article 2008
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Savelyev, T.G. (author), Yarovoy, A.G. (author), Ligthart, L.P. (author)
This paper presents a 3-D imaging technique for an ultra-wideband (UWB) ground penetrating radar (GPR) with a single transmit antenna and a linear receive array. The video impulse GPR working in the frequency band of 0.3–3 GHz has been designed in IRCTR for landmine detection, i.e., for a near-field application. Installed on a vehicle it can...
journal article 2008
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Yarovoy, A.G. (author), Savelyev, T.G. (author), Aubry, P.J. (author), Ligthart, L.P. (author)
conference paper 2007
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Yarovoy, A.G. (author), Ligthart, L.P. (author), Matuzas, J. (author), Levitas, B. (author)
journal article 2006
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Lestari, A.A. (author), Yarovoy, A.G. (author), Ligthart, L.P. (author)
journal article 2005
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Lestari, A.A. (author), Yarovoy, A.G. (author), Ligthart, L.P. (author)
journal article 2004
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Lestari, A.A. (author), Yarovoy, A.G. (author), Ligthart, L.P. (author)
journal article 2004
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Lestari, A.A. (author), Yarovoy, A.G. (author), Ligthart, L.P. (author)
journal article 2004
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Yarovoy, A.G. (author), Vazouras, C.N. (author), Fikioris, J.G. (author), Ligthart, L.P. (author)
journal article 2004
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Yarovoy, A.G. (author), Schukin, A.D. (author), Kaploun, I.V. (author), Ligthart, L.P. (author)
journal article 2002
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Vorobyov, A.V. (author), Bagga, S. (author), Yarovoy, A.G. (author), Haddad, S.A.P. (author), Serdijn, W.A. (author), Long, J.R. (author), Irahhauten, Z. (author), Ligthart, L.P. (author)
For impulse radio ultrawideband communications an “antenna plus generator” system is co-designed and an on chip generator is integrated into the antenna. This approach does away with the need for intermediate transmission lines conventionally placed between an RF device/generator and an antenna and therefore eliminates the need for a balun,...
journal article
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