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Carrier frequencies, holomorphy and unwinding

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arxiv 1606.06475 v1 pith:EAJ72XXG submitted 2016-06-21 math.NA cs.NAmath.CVphysics.data-an

Carrier frequencies, holomorphy and unwinding

classification math.NA cs.NAmath.CVphysics.data-an
keywords unwindingseriescarrierfunctionsholomorphicpartaddinganalysis
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We prove that functions of intrinsic-mode type (a classical models for signals) behave essentially like holomorphic functions: adding a pure carrier frequency $e^{int}$ ensures that the anti-holomorphic part is much smaller than the holomorphic part $ \| P_{-}(f)\|_{L^2} \ll \|P_{+}(f)\|_{L^2}.$ This enables us to use techniques from complex analysis, in particular the \textit{unwinding series}. We study its stability and convergence properties and show that the unwinding series can stabilize and show that the unwinding series can provide a high resolution time-frequency representation, which is robust to noise.

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