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Browsing by Subject "Link availability"

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    Analysis and implementation of prediction models for the design of fixed terrestrial point-to-point systems
    (2015) Göktaş, Polat
    In this study, propagation link analysis and implementation of prediction models for the design of fixed terrestrial point-to-point systems are aimed. Different propagation models in the literature are examined as case studies and comparisons are made. Rec. ITU-R P.530 Model is analyzed in detail. The worst month link availability is investigated for terrestrial microwave LOS/NLOS radio links operating in NATO Band 3+ (1350-2690 MHz) and NATO Band 4 (4400- 5000 MHz) frequency bands. The calculation of Bullington model of diffraction loss is extended for LOS path case and determination of reflection points on the terrain profile is improved. Several terrestrial microwave LOS/NLOS radio links are analyzed using the propagation parameters such as TX (transmitter) and RX (receiver) station coordinates, path length, frequency, antenna heights above ground level, antenna gains, polarization, radio refractivity gradient, time percentage, target SNR (Signal to Noise Ratio), bandwidth, digital terrain elevation and climate data. The calculation of the received power with the effect of the ground reflection is developed to calculate the fade margin in the defined microwave LOS/NLOS radio links. Received power is calculated by taking into consideration the attenuation due to rain and atmospheric gases, diffraction loss and the effect of multipath fading due to reflection. The validity of the implementation of link analysis is justified by comparison with the commercial ATDI ICS telecom software and the measurement data existing in the literature over sample microwave LOS/NLOS radio links.
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    The effect of terrain roughness in the microwave line-of-sight multipath fading estimation based on Rec. ITU-R P.530-15
    (IEEE, 2014-08) Göktas, Polat; Altıntaş, Ayhan; Topçu, Satılmış; Karasan, Ezhan
    Multipath fading is an important constraint on the prediction of path loss for terrestrial line-of-sight microwave links. The International Telecommunication Union - Radiocommunication (ITU-R) Rec. P.530 [1] is one of the most widely used methods providing guidelines for the design of terrestrial line-of-sight links. The purpose of the study presented in this paper is to make an investigation of the effect of both terrain roughness and geoclimatic factor parameters in the path loss characteristics of microwave line-of-sight (LOS) propagation in NATO Band 3+ (1350-2690 MHz) and NATO Band 4 (4440-5000 MHz) frequency ranges. The two parameters led to significantly different results for the link availability due to multipath fading as a function of the fade margin. © 2014 IEEE.
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    Sabit karasal noktadan-noktaya sistemlerin çok yollu sönümlenmesini azaltmak için uzaysal çeşitleme tekniğini değerlendirme
    (IEEE, 2015-05) Göktaş, Polat; Topcu, Satılmış; Karaşan, Ezhan; Altıntaş, Ayhan
    Çok yollu sönümlenme mekanizması, 10 GHz altındaki frekanslarda çalışan sabit karasal mikrodalga görüş çizgisi radyo linkleri için belirleyici yayılım faktörüdür. Çok yollu yayılımdan dolayı sönümlenme karasal görüş çizgisi linklerdeki alınan sinyalleri zayıflamakta ve dolayısıyla noktadan-noktaya sistemlerin performasını bozmaktadır. Çeşitli metodlar; çeşitleme ile yada çeşitleme tekniği olmadan çok yollu sönümlenmenin etkilerini azaltmak için kullanılır. Uzay çeşitlemede dikey aralık çok yollu sönümlenmeyi azaltmanın en etkili metodlarından biridir. Bu makalede, sabit karasal mikrodalga görüş çizgisi radyo linkleri için iki anten uzay çeşitleme konfigürasyonu konseptinin değerlendirilmesi yapılmıştır. Arazi hat profili boyunca yerden yansıma noktalarından kaynaklanan çok yolluluktan dolayı çok yollu sönümlenme olayları analiz edilmiştir. Örnek sabit karasal mikrodalga görüş çizgisi radyo linklerindeki farklı anten yerden yüksekliklerinde iki anten konfigürasyonu ile uzaysal çeşitleme benzetim çalışması yapılmıştır. Benzetim sonuçları alıcıdaki güç seviyesine göre degerlendirilmiştir.

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