Title :
A Resonant Controller With High Structural Robustness for Fixed-Point Digital Implementations
Author :
Khajehoddin, Sayed Ali ; Karimi-Ghartemani, Masoud ; Jain, Praveen K. ; Bakhshai, Alireza
Author_Institution :
Dept. of Electr. & Comput. Eng., Queens Univ., Kingston, ON, Canada
fDate :
7/1/2012 12:00:00 AM
Abstract :
This paper presents a new resonant (R) controller. The proposed R controller is input-output equivalent to the conventional R controller but it is internally nonlinear. Its internal state variables are the transformed versions of the conventional R controller into the polar coordinates. It is, thus, given the name of polar form resonant (PFR) controller. While the PFR is totally equivalent to the R controller in continuous-time domain, it offers a much higher structural robustness when it comes to digital implementations. Particularly, it is shown in this paper that the PFR resolves the well-known structural sensitivity of the R controller for applications that need high sampling frequency and have word length limitations. Such a structural sensitivity is conventionally resolved by resorting to the delta-domain realizations. The PFR offers an alternative method to the delta-domain realization technique with even higher degree of robustness and easier stage of adjustment. Moreover, the PFR can easily be enhanced to accommodate frequency variations, a feature that is not easily attainable using the delta-domain method. Feasibility of the PFR controller is verified using a laboratory prototype of a single-phase uninterruptible power supply system operating at high sampling and switching frequencies where the control system is implemented on a field programmable gate array board.
Keywords :
continuous time systems; digital control; field programmable gate arrays; nonlinear control systems; robust control; sensitivity analysis; uninterruptible power supplies; PFR controller; continuous time domain; delta domain realization technique; field programmable gate array; fixed point digital implementation; nonlinear controller; polar form resonant; resonant controller; sampling frequency; state variables; structural robustness; structural sensitivity; switching frequency; uninterruptible power supply system; Field programmable gate arrays; Frequency control; Phase locked loops; Resonant frequency; Robustness; Sensitivity; Transfer functions; Delta-domain realization; fixed-point implementation; high sampling frequency; phase-locked loop (PLL); resonant controller; robust realization; uninterruptible power supply (UPS);
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2011.2181422