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Effect of partial coherence on MISO FSO systems

İsim Effect of partial coherence on MISO FSO systems
Yazar Gökçe, M. C., Baykal, Y., Uysal, Murat
Basım Tarihi: 2015
Basım Yeri - IEEE
Konu MISO, FSO, Optical wave propagation, Power scintillation, Aperture averaging
Tür Belge
Dil İngilizce
Dijital Evet
Yazma Hayır
Kütüphane: Özyeğin Üniversitesi
Demirbaş Numarası 978-1-4673-7726-3
Kayıt Numarası 3c4d9256-f416-4e1d-addd-4cfca388ca46
Lokasyon Electrical & Electronics Engineering
Tarih 2015
Notlar Due to copyright restrictions, the access to the full text of this article is only available via subscription.
Örnek Metin Multiple-input single-output (MISO) techniques are employed in free space optical (FSO) systems to mitigate the degrading effects of atmospheric turbulence and therefore the link reliability is improved. In this paper, we consider an incoherent radial array beams and a finite sized slow detector for MISO FSO systems. We have derived the average power and power correlation formulas on the finite sized slow detector using the Huygens Fresnel principle in weak atmospheric turbulence. This helps us to find the system performance, such as power scintillation and aperture averaging factor. Effect of system parameters such as the source size, the ring radius, the degree of coherence, the link distance, the structure constant and the receiver aperture radius are analyzed on the performance of MISO FSO systems.
DOI 10.1109/IWOW.2015.7342272
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Effect of partial coherence on MISO FSO systems

Yazar Gökçe, M. C., Baykal, Y., Uysal, Murat
Basım Tarihi 2015
Basım Yeri - IEEE
Konu MISO, FSO, Optical wave propagation, Power scintillation, Aperture averaging
Tür Belge
Dil İngilizce
Dijital Evet
Yazma Hayır
Kütüphane Özyeğin Üniversitesi
Demirbaş Numarası 978-1-4673-7726-3
Kayıt Numarası 3c4d9256-f416-4e1d-addd-4cfca388ca46
Lokasyon Electrical & Electronics Engineering
Tarih 2015
Notlar Due to copyright restrictions, the access to the full text of this article is only available via subscription.
Örnek Metin Multiple-input single-output (MISO) techniques are employed in free space optical (FSO) systems to mitigate the degrading effects of atmospheric turbulence and therefore the link reliability is improved. In this paper, we consider an incoherent radial array beams and a finite sized slow detector for MISO FSO systems. We have derived the average power and power correlation formulas on the finite sized slow detector using the Huygens Fresnel principle in weak atmospheric turbulence. This helps us to find the system performance, such as power scintillation and aperture averaging factor. Effect of system parameters such as the source size, the ring radius, the degree of coherence, the link distance, the structure constant and the receiver aperture radius are analyzed on the performance of MISO FSO systems.
DOI 10.1109/IWOW.2015.7342272
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