DocumentCode :
1251002
Title :
Small Perturbation Harmonic Coupling in Nonlinear Periodicity Preservation Circuits
Author :
Baylis, Charles, II ; Marks, Robert J., II
Author_Institution :
Dept. of Electr. & Comput. Eng., Baylor Univ., Waco, TX, USA
Volume :
59
Issue :
12
fYear :
2012
Firstpage :
3034
Lastpage :
3045
Abstract :
Nonlinear systems and circuits, while required for many applications, presently require a design procedure that is often complex. In many cases, the design process is either based upon measurements or complex nonlinear models. This paper presents periodicity preservation (PP) and time invariant PP (TIPP) system theory as a simple way to characterize behavior for a significant class of nonlinear systems. PP systems preserve signal periodicity and are conducive to modeling harmonic coupling. When linearized to small perturbations, the harmonic coupling is described by the Jacobian about the operating point. The harmonic coupling weights, which are elements of the Jacobian, can be measured experimentally. For some TIPP systems such as LTI systems and memoryless nonlinearities, a single experiment suffices to determine the harmonic coupling weights. Other PP systems, including mixing and linear time variant systems, require more experimental queries. TIPP system theory is foundational to the theory of X-parameters®, S-functions and polyharmonic distortion.
Keywords :
harmonic distortion; nonlinear network analysis; nonlinear systems; perturbation techniques; LTI systems; PP systems; S-functions; TIPP system theory; X-parameters; complex nonlinear models; harmonic coupling weights; memoryless nonlinearity; nonlinear periodicity preservation circuits; nonlinear systems; polyharmonic distortion; signal periodicity; small perturbation harmonic coupling model; time invariant PP system theory; Approximation methods; Couplings; Fourier series; Harmonic analysis; Jacobian matrices; Nonlinear systems; Power harmonic filters; Affine approximation; Wirtinger calculus; harmonic coupling; harmonics; nonlinear systems; power amplifier design;
fLanguage :
English
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
Publisher :
ieee
ISSN :
1549-8328
Type :
jour
DOI :
10.1109/TCSI.2012.2206438
Filename :
6248714
Link To Document :
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