Title :
A note on a sampling mixer under the coloured noise influence
Author :
Patil, N.S. ; Sharma, Sanjeev Narayan
Author_Institution :
Electr. Eng. Dept., S.V. Nat. Inst. of Technol., Surat, India
Abstract :
In modern communication systems, one of the problems limiting the application of direct conversion receivers is the local oscillator port noise of sampling mixers. Ignoring the oscillator port noise contribution to the dynamical analysis of the sampling mixer will have influence on the trajectory estimation as well as its control. The intent of this note is to develop a general theory of sampling mixer under the coloured noise influence. The coloured noise process is exploited to model the oscillator port noise in lieu of the white noise process. Importantly, the coloured noise process confirms the real noise statistics. The coloured noise equation of the sampling mixer of this note is described by a scalar bilinear time-varying Stochastic Differential Equation (SDE). Subsequently, the extended phase space in combination with the notion of the Itô differential plays the role to develop the coupled dynamical equations of the estimated state trajectory of the sampling mixer. The numerical simulation in the MATLAB environment is demonstrated as well.
Keywords :
differential equations; mixers (circuits); oscillators; white noise; Matlab environment; SDE; coloured noise equation; coloured noise process; communication systems; coupled dynamical equations; direct conversion receivers; extended phase space; local oscillator port noise; noise statistics; numerical simulation; sampling mixer; scalar bilinear time-varying stochastic differential equation; state trajectory estimation; white noise process; Colored noise; Equations; Mathematical model; Mixers; Stochastic processes; Trajectory; Stochastic differential equations; bilinear systems; coloured noise; sampling mixer;
Conference_Titel :
Control Applications (CCA), 2012 IEEE International Conference on
Conference_Location :
Dubrovnik
Print_ISBN :
978-1-4673-4503-3
Electronic_ISBN :
1085-1992
DOI :
10.1109/CCA.2012.6402357