Title :
FPGA-Based Reconfigurable Control for Fault-Tolerant Back-to-Back Converter Without Redundancy
Author :
Shahbazi, Moein ; Poure, Philippe ; Saadate, Shahrokh ; Zolghadri, Mohammad Reza
Author_Institution :
Sharif Univ. of Technol., Tehran, Iran
Abstract :
In this paper, an FPGA-based fault-tolerant back-to-back converter without redundancy is studied. Before fault occurrence, the fault-tolerant converter operates like a conventional back-to-back six-leg converter, and after the fault, it becomes a five-leg converter. Design, implementation, and experimental verification of an FPGA-based reconfigurable control strategy for this converter are discussed. This reconfigurable control strategy allows the continuous operation of the converter with minimum affection from a fault in one of the semiconductor switches. A very fast detection scheme is used to detect and locate the fault. Implementation of the fault detection and of the fully digital control schemes on a single FPGA is realized, based on a suited methodology for rapid prototyping. FPGA in loop and also experimental tests are carried out, and the results are presented. These results confirm the capability of the proposed reconfigurable control and fault-tolerant structure.
Keywords :
digital control; fault diagnosis; fault tolerance; field programmable gate arrays; power convertors; FPGA-based fault-tolerant back-to-back converter; FPGA-based reconfigurable control strategy; back-to-back six-leg converter; fault detection; fault occurrence; fault-tolerant structure; five-leg converter; fully digital control schemes; semiconductor switches; Fault detection; Fault tolerant systems; Field programmable gate arrays; Pulse width modulation; Redundancy; Voltage measurement; Back-to-back converter; fault detection; fault-tolerant converter; field programmable gate array (FPGA); five-leg converter; hardware in the loop (HIL);
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2012.2200214