We consider the phase noise affecting communication systems, where local oscillators are employed to obtain a reference signal for frequency and phase synchronizations. We try to fill the gap between measurements and analytical models, in case of free-running and phase-locked oscillators. In particular, we propose a closed form expression for the power spectral density of the phase noise described by few parameters that are explicitly linked to the oscillator measurements. We also propose an analytical model for the oscillator power spectral density
International audienceSynchronization of coupled oscillators is a paradigm for complexity in many ar...
Phase noises in Phase-Locked Loops (PLLs) are a key parameter for communication systems that contrib...
Phase noise must be carefully considered when designing an OFDM-based communication system since an ...
The continuous increase in demand for higher data rates due to applications with massive number of u...
In this paper, we apply correlation theory methods to obtain a model for the near-carrier oscillator...
In this paper, we apply correlation theory methods to obtain a model for the near-carrier oscillator...
The continuous increase in demand for higher data rates due to applications with massive number of u...
Presenting a comprehensive account of oscillator phase-noise and frequency stability, this practical...
Oscillator phase noise (PN) is one of the major problems that affect the performance of communicatio...
We present a general circuit-based model of LC oscillator phase noise applicable to both white noise...
In this paper, we derive an expression for the near-carrier power spectral density of an oscillator ...
Oscillators are often followed by square wave forming circuits and frequency dividers. Traditionally...
Oscillators are important elements of RF and microwave communications systems. The increased use of ...
Oscillators are often followed by square wave forming circuits and frequency dividers. Traditionally...
Oscillators are often followed by square wave forming circuits and frequency dividers. Traditionally...
International audienceSynchronization of coupled oscillators is a paradigm for complexity in many ar...
Phase noises in Phase-Locked Loops (PLLs) are a key parameter for communication systems that contrib...
Phase noise must be carefully considered when designing an OFDM-based communication system since an ...
The continuous increase in demand for higher data rates due to applications with massive number of u...
In this paper, we apply correlation theory methods to obtain a model for the near-carrier oscillator...
In this paper, we apply correlation theory methods to obtain a model for the near-carrier oscillator...
The continuous increase in demand for higher data rates due to applications with massive number of u...
Presenting a comprehensive account of oscillator phase-noise and frequency stability, this practical...
Oscillator phase noise (PN) is one of the major problems that affect the performance of communicatio...
We present a general circuit-based model of LC oscillator phase noise applicable to both white noise...
In this paper, we derive an expression for the near-carrier power spectral density of an oscillator ...
Oscillators are often followed by square wave forming circuits and frequency dividers. Traditionally...
Oscillators are important elements of RF and microwave communications systems. The increased use of ...
Oscillators are often followed by square wave forming circuits and frequency dividers. Traditionally...
Oscillators are often followed by square wave forming circuits and frequency dividers. Traditionally...
International audienceSynchronization of coupled oscillators is a paradigm for complexity in many ar...
Phase noises in Phase-Locked Loops (PLLs) are a key parameter for communication systems that contrib...
Phase noise must be carefully considered when designing an OFDM-based communication system since an ...