TY - JOUR
T1 - Design of quantised dynamic output feedback for decentralised H∞ control systems
AU - Zhai, Guisheng
AU - Chen, Ning
AU - Gui, Weihua
PY - 2013
Y1 - 2013
N2 - The design of quantised dynamic output feedback for decentralised H∞ control systems is considered with multiinput and multi-output. It is assumed that a decentralised dynamic output feedback has been designed for a decentralised continuous-time LTI system, so that the closed-loop system is stable and a desired H∞ disturbance attenuation level is achieved, and that each channel's measurement outputs are quantised before they are passed to the local controller. We propose a local-output-dependent strategy for updating the quantisers' parameters, so that the overall closed-loop system is asymptotically stable and achieves the same H∞ disturbance attenuation level. Both the pre-designed controllers and the quantisers' parameters are constructed in a decentralised manner, depending on local measurement outputs.
AB - The design of quantised dynamic output feedback for decentralised H∞ control systems is considered with multiinput and multi-output. It is assumed that a decentralised dynamic output feedback has been designed for a decentralised continuous-time LTI system, so that the closed-loop system is stable and a desired H∞ disturbance attenuation level is achieved, and that each channel's measurement outputs are quantised before they are passed to the local controller. We propose a local-output-dependent strategy for updating the quantisers' parameters, so that the overall closed-loop system is asymptotically stable and achieves the same H∞ disturbance attenuation level. Both the pre-designed controllers and the quantisers' parameters are constructed in a decentralised manner, depending on local measurement outputs.
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U2 - 10.1049/iet-cta.2012.1029
DO - 10.1049/iet-cta.2012.1029
M3 - Article
AN - SCOPUS:84883014730
SN - 1751-8644
VL - 7
SP - 1408
EP - 1414
JO - IET Control Theory and Applications
JF - IET Control Theory and Applications
IS - 10
ER -