Linear control of the buck converter with unknown resistive loads
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This article describes the design of an observer-based, robust, linear output feedback controller for the regulation, and output reference trajectory tracking tasks, in switched buck converter circuits with completely unknown, time-varying, resistive loads. The disturbance effects of the unknown load resistance are on-line estimated by means of a Generalized Proportional Integral (GPI) observer, which represents the dual counterpart of Generalized Proportional Integral controllers, introduced in Fliess et al. [3]. The reconstructed disturbance complements the controller in a cancelation effort which allows the feedback controller to become a traditional PD controller. The designed average feedback controller is then implemented via a Σ-Δ-modulator, which effectively translates the designed continuous average feedback control input signal into a discrete valued switched input signal driving the converter%27s input switch and preserving all relevant features of the average design. The appendix collects some generalities about GPI observers. © 2010 IEEE.
This article describes the design of an observer-based, robust, linear output feedback controller for the regulation, and output reference trajectory tracking tasks, in switched buck converter circuits with completely unknown, time-varying, resistive loads. The disturbance effects of the unknown load resistance are on-line estimated by means of a Generalized Proportional Integral (GPI) observer, which represents the dual counterpart of Generalized Proportional Integral controllers, introduced in Fliess et al. [3]. The reconstructed disturbance complements the controller in a cancelation effort which allows the feedback controller to become a traditional PD controller. The designed average feedback controller is then implemented via a Σ-Δ-modulator, which effectively translates the designed continuous average feedback control input signal into a discrete valued switched input signal driving the converter's input switch and preserving all relevant features of the average design. The appendix collects some generalities about GPI observers. © 2010 IEEE.
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Control inputs; Converter circuits; Disturbance effects; Feedback controller; Input signal; Linear controls; Linear output-feedback controllers; Load resistances; PD controllers; Proportional integral; Proportional integral controllers; Reference trajectories; Resistive loads; Time varying; DC-DC converters; Feedback control; Industrial electronics; Linear control systems; Nonlinear control systems; Observability; Robust control; Time varying networks; Two term control systems; Controllers
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