Title : 
Digital AFC control of a three-phase three-wire unity-power-factor PWM rectifier
         
        
            Author : 
Orellana, Marcos ; Grino, Robert
         
        
        
        
        
        
            Abstract : 
Nowadays, ac/dc power converters must fulfill more and more design constraints with respect to the electrical grid: harmonics reduction, operation with sags and swells and/or high grid impedances, etc. This is a challenge for the controllers, since they must be robust enough to ensure the stability of the system, specially when working the conditions are not the ideal ones. In this paper, a discrete-time control technique based on Adaptive Feed-forward Cancellation (AFC) is proposed for a three-phase three-wire rectifier with a LCL input filter. The continuous-time design method for resonators has been translated into the discrete-time domain. Thus, the controller has been entirely designed in discrete-time, avoiding approximate conversions of the controller from the continuous-time domain. Besides, the usual unit computational delay in sampled-data control systems is taken into account. The simulation results show that this kind of resonant control is not only robust, but also presents a good performance.
         
        
            Keywords : 
AC-DC power convertors; PWM rectifiers; adaptive control; continuous time systems; control system synthesis; delays; digital control; discrete time systems; feedforward; power factor; power filters; power grids; power supply quality; sampled data systems; stability; LCL input filter; ac-dc power converters; adaptive feedforward cancellation; continuous-time design method; design constraints; digital AFC control; discrete-time control technique; electrical grid; harmonics reduction; high grid impedances; resonant control; resonators; sags; sampled-data control systems; stability; swells; three-phase three-wire unity-power-factor PWM rectifier; unit computational delay; Equations; Frequency control; Mathematical model; Resonant frequency; Transfer functions; Voltage control; Voltage measurement;
         
        
        
        
            Conference_Titel : 
Control Conference (ASCC), 2013 9th Asian
         
        
            Conference_Location : 
Istanbul
         
        
            Print_ISBN : 
978-1-4673-5767-8
         
        
        
            DOI : 
10.1109/ASCC.2013.6606312