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Description
  • The paper deals with frequency-domain models of memristor, memcapacitor, and meminductor, and their use in the steady-state analysis by means of the harmonicbalance method. The models are based on a polynomial approximation of constitutive relations, allowing analytical formulation of relations between the spectral components of stimulus and response, for both periodic and quasi-periodic steady-state conditions. It is not necessary to transform signals between the time and the frequency domains to obtain the mem-element response. Example analyses demonstrate the model use.
  • The paper deals with frequency-domain models of memristor, memcapacitor, and meminductor, and their use in the steady-state analysis by means of the harmonicbalance method. The models are based on a polynomial approximation of constitutive relations, allowing analytical formulation of relations between the spectral components of stimulus and response, for both periodic and quasi-periodic steady-state conditions. It is not necessary to transform signals between the time and the frequency domains to obtain the mem-element response. Example analyses demonstrate the model use. (en)
Title
  • Frequency-Domain Steady-State Analysis of Circuits with Mem-Elements
  • Frequency-Domain Steady-State Analysis of Circuits with Mem-Elements (en)
skos:prefLabel
  • Frequency-Domain Steady-State Analysis of Circuits with Mem-Elements
  • Frequency-Domain Steady-State Analysis of Circuits with Mem-Elements (en)
skos:notation
  • RIV/60162694:G43__/11:00449085!RIV12-MO0-G43_____
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  • 200399
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  • RIV/60162694:G43__/11:00449085
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  • Mem-elements; harmonic balance; steady state (en)
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  • [800FEFC55B67]
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  • Bursa, Turkey
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  • Bursa, Turkey
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  • Proceedings of the 7th INTERNATIONAL CONFERENCE on ELECTRICAL and ELECTRONICS ENGINEERING
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  • Biolek, Dalibor
  • Biolková, Viera
  • Kolka, Zdeněk
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number of pages
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  • IEEE
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  • 978-605-01-0204-8
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  • G43
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