Title :
Induction motor control with small DC-link capacitor inverter fed by three-phase diode front-end rectifiers
Author :
SeHwan Kim ; GwangRok Kim ; Anno Yoo ; Jul-Ki Seok
Author_Institution :
Power Conversion Lab., Yeungnam Univ., Gyeongsan, South Korea
Abstract :
This paper presents a small film capacitor inverter-based induction motor control approach to enhance with reliability and power density of three-phase variable speed drive applications. A robust hybrid motor controller is developed to prevent performance degradation caused by the electrolytic capacitor-less inverter fed by front-end diode rectifiers. The structure of the controller combines a modelbased voltage controller (MVC) and a hexagon voltage manipulating controller (HVMC). The MVC determines the command output voltage with the intersection of the torque and rotor flux linkage command. In HVMC mode, the command voltage vector is determined simply by the torque command and the hexagon-shaped inverter voltage boundary. Successful application of the control approach is corroborated by a graphical and analytical means that naturally lead to a single voltage selection rule. This paper also examines the operation sensitivity under motor parameter drifts to determine how to decouple its effect using a voltage disturbance state-filter design.
Keywords :
electrolytic rectifiers; induction motors; invertors; machine control; power system reliability; rotors; torque; variable speed drives; voltage regulators; DC-link capacitor inverter fed; HVMC; MVC; command voltage vector; electrolytic capacitor; front-end diode rectifiers; hexagon voltage manipulating controller; hybrid motor controller; induction motor control; inverter voltage boundary; model-based voltage controller; power density; power reliability; rotor flux linkage command; single voltage selection rule; three-phase diode front-end rectifiers; torque command; variable speed drive applications; voltage disturbance state-filter design; Capacitors; Induction motors; Inverters; Rotors; Stators; Torque; Voltage control; Front-end diode rectifiers; hexagon voltage manipulating controller (HVMC); model-based voltage controller (MVC); small film capacitor inverter; three-phase variable speed drive;
Conference_Titel :
Energy Conversion Congress and Exposition (ECCE), 2014 IEEE
Conference_Location :
Pittsburgh, PA
DOI :
10.1109/ECCE.2014.6953888