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Passive Controller Realization of a Biquadratic Impedance With Double Poles and Zeros as a Seven-Element Series—Parallel Network for Effective Mechanical Control

  • Kai Wang
  • , Michael Z. Q. Chen*
  • , Chanying Li
  • , Guanrong Chen
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

This work is concerned with the passive realizability problem for a biquadratic impedance with double poles and zeros as a seven-element series–parallel RLC (damper-spring-inerter) network, which is a series or a parallel connection of two networks: a three-element series–parallel network and a four-element series–parallel network. First, a necessary and sufficient condition is obtained for the realizability of a biquadratic impedance with double poles and zeros as a series–parallel network containing no more than six elements (see Theorem 1). Then, the main theorem is presented (see Theorem 2), which is derived for three-reactive-element, four-reactive-element, and five-reactive-element settings, respectively (see Lemmas 2–4). The results can be directly utilized to physically construct a passive mechanism containing dampers, springs, and inerters, which can be regarded as a passive controller for some mechanical control systems.
Original languageEnglish
Pages (from-to)3010-3015
JournalIEEE Transactions on Automatic Control
Volume63
Issue number9
Online published17 Jan 2018
DOIs
Publication statusPublished - Sept 2018

Research Keywords

  • biquadratic impedance
  • Control systems
  • Impedance
  • inerter
  • Passive mechanical control
  • passive network synthesis
  • Passive networks
  • Poles and zeros
  • Resistors
  • series-parallel network
  • Springs
  • STEM

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