DocumentCode :
3261648
Title :
Macromodelling oscillators using Krylov-subspace methods
Author :
Lai, Xiaolue ; Roychowdhury, Jaijeet
Author_Institution :
Dept. of Electr. & Comput. Eng., Minnesota Univ., Mankatto, MN
fYear :
2006
fDate :
24-27 Jan. 2006
Abstract :
We present an efficient method for automatically extracting unified amplitude/phase macromodels of arbitrary oscillators from their SPICE-level circuit descriptions. Such comprehensive oscillator macromodels are necessary for accuracy when speeding up simulation of higher-level circuits/systems, such as PLLs, in which oscillators are embedded. Standard MOR techniques for linear time invariant (LTI) and varying (LTV) systems are not applicable to oscillators on account of their fundamentally nonlinear phase behavior. By employing a cancellation technique to deflate out the phase component, we restore the validity and efficacy of Krylov-subspace-based LTV MOR techniques for macromodelling oscillator amplitude responses. The nonlinear phase response is re-incorporated into the macromodel after the amplitude components have been reduced. The resulting unified macromodels predict oscillator waveforms, in the presence of any kind of input or interference, at far lower computational cost than full SPICE-level simulation, and with far greater accuracy compared to existing macromodels. We demonstrate the proposed techniques on LC and ring oscillators, obtaining speedups of 30-120times with no appreciable loss of accuracy, even for small circuits
Keywords :
SPICE; circuit simulation; nonlinear network analysis; oscillators; Krylov-subspace methods; SPICE-level circuit description; amplitude response; arbitrary oscillators; automatic macromodel extraction; linear time invariant system; linear varying system; nonlinear phase behavior; nonlinear phase response; oscillator macromodelling; oscillator macromodels; oscillator waveform prediction; unified amplitude-phase macromodels; Circuit simulation; Computational modeling; Frequency; Interference; Phase locked loops; Power system transients; Predictive models; Ring oscillators; Time domain analysis; Voltage-controlled oscillators;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Design Automation, 2006. Asia and South Pacific Conference on
Conference_Location :
Yokohama
Print_ISBN :
0-7803-9451-8
Type :
conf
DOI :
10.1109/ASPDAC.2006.1594739
Filename :
1594739
Link To Document :
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