Büyük sinyal analizi ve alçak frekansli geri besleme kullanilarak düşük faz gürültülü osilatör tasarim ve simülasyonu
2013
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Advisor: Prof. Dr. Ekmel Özbay ; Dr. Tarık Reyhan
Abstract (EN)
Spectral purity of oscillators is of great importance in both commercial and military systems. Implementing communication, radar, and Electronic Warfare systems with increasingly higher frequencies, wider bandwidths, greater data rates, and more complex modulation schemes require low phase noise signal sources. Phase noise in signal sources is not a well understood area. Although an- alytical models accomplish to describe the phase noise of known signal sources accurately, a unifying and reproducible model or method that provides a priori information for the design of a low phase noise oscillator is still not established. Due to this lack of methodical approach, mostly empirical design practices that are known to produce good results are widely adopted. Proposed design method is similar. Design and simulation of a low phase noise Dielectric Resonator Oscillator is studied. Noise sources in oscillators are briefly summarized. Phase noise models are compared. Dielectric resonators, which use small, disc-shaped ceramic mate- rials that have high quality factors at microwave and millimeter-wave frequencies, are introduced with a concise theoretical coverage. Eff ect of circuit con guration on phase noise is studied on two di erent FET devices. Common-gate con guration gave best simulation results for both tran- sistors. Parameters of coupling to the resonator are studied based on large signal anal- ysis of the active device. The optimal parameters are described with supporting simulation results. Comparisons with suboptimal designs are provided, results indicate that optimization improves the phase noise on the order of tens of dBs. Low frequency feedback method is investigated. Simulation results showed signi cant improvement in close-in phase noise when such networks are used. A large data set is obtained with input parameters of frequency, device, bias point, and feedback con guration; and optimality of such schemes are discussed based on it. The methods for suppressing both close-in and away from the carrier phase noise are presented in the most generalized way, only to be reproduced for the intended device of operation.
Author
Dr. Çağatay Ertürk Güngör
How to Cite
Çağatay Ertürk Güngör (Master Thesis). Büyük sinyal analizi ve alçak frekansli geri besleme kullanilarak düşük faz gürültülü osilatör tasarim ve simülasyonu, 2013, Bilkent University.
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