학술논문


Hybrid Fractional Order and Model Predictive Control Method for Single-Phase Five-Level T-type Inverter with LCL Filter
Document Type
Conference
Source
IECON 2024 - 50th Annual Conference of the IEEE Industrial Electronics Society Industrial Electronics Society, IECON 2024 – 50th Annual Conference of the IEEE. :1-6 Nov, 2024
Subject
Communication, Networking and Broadcast Technologies
Components, Circuits, Devices and Systems
Computing and Processing
Power, Energy and Industry Applications
Robotics and Control Systems
Signal Processing and Analysis
Transportation
System performance
Simulation
Capacitors
Active filters
Multilevel inverters
Cost function
Resonance
Mathematical models
Voltage control
Predictive control
LCL grid-tied inverter
model predictive control
resonant control
multilevel inverter
T-type inverter
Language
Abstract
This paper presents a hybrid controller based on fractional order control (FOC) with finite control set model predictive control (FCS-MPC) for LCL grid-tied single-phase multilevel inverters. Recently, FCS-MPC has received major interest in fast control tracking and handling several control objectives together in a single cost function. However, in the case of LCL grid-tied inverters, the control of the inverter side current, grid side current, and AC filter capacitor voltage, in addition to the voltage balance of dc-link capacitors, makes the design process of a single cost function more difficult to reach. Therefore, a cascaded FOC resonant controller for grid-side current with inner FCS-MPC for controlling inverter-side current and capacitor voltages is proposed for a single-phase five-level H-bridge T-type grid-tied inverter. The proposed controller merges the characteristics of FOC, FCS-MPC, and resonant controllers, improving system performance. Simulation results are provided to verify the superior tracking and control performance of the new proposed controller.