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Dual input–output pairs for modeling hysteresis inspired by mem-models
Authors:Jin-Song Pei  François Gay-Balmaz  Joseph P Wright  Michael D Todd  Sami F Masri
Institution:1.School of Civil Engineering and Environmental Science,University of Oklahoma,Norman,USA;2.CNRS LMD,Ecole Normale Supérieure de Paris,Paris,France;3.Division of Applied Science,Weidlinger Associates Inc.,New York,USA;4.Department of Structural Engineering,University of California, San Diego,La Jolla,USA;5.Sonny Astani Department of Civil and Environmental Engineering,University of Southern California,Los Angeles,USA
Abstract:We call attention to a dual-pair concept for modeling hysteresis involving instantaneous switching: Specifically, there are two input–output pairs for each hysteresis model under one specific input, namely a differential pair and an integral pair. Currently in engineering mechanics, only one pair is being recognized and utilized, not the other. Whereas this dual-pair concept is inherent in the differential and algebraic forms of memristors and memcapacitors, the concept has not been carried over to memristive system theory, nor to memcapacitive system theory. We show that the “zero-crossing” feature in memristors, memcapacitors, and memristive/memcapacitive models (i.e., the “mem-models”) is also a feature of the differential pairs of well-known non-mem-models, examples of which are Ramberg–Osgood, Bouc–Wen, bilinear hysteresis, and classical Preisach. The dual-pair concept thus connects mem-models and non-mem-models, thereby facilitating the modeling of hysteresis, and raising a set of scientific questions for further studies that might not otherwise come to awareness.
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