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Three-phase PWM rectifier based on integrated power module and fixed-point digital signal processor for rapid prototyping issues

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The paper presents a laboratory test-bench with a three-phase two-level PWM rectifier. The setup is based on a 3.3kW integrated power module and a 32-bit fixed-point digital signal processor with a Simulink auto coder for rapid prototyping of control strategies. The setup has been diversified into separate modules for different tasks: grid voltage and grid current measurement modules, hardware dead-time block with IGBT gate signal inverted logic driver, analogue signal processing block for sensor-to-processor interface, auxiliary control electronics and power circuits with overvoltage and overload protections. These modules assembled in unit provide entire functionality of the laboratory setup with the PWM rectifier for flexible and fast implementation of control strategies either for their further development or for the purpose of didactics. In order to demonstrate the operation of the proposed test-bench Sliding-Mode Voltage Oriented Control with ?-PWM has been implemented to control the PWM rectifier. Numerous experimental results have been presented and discussed.
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Bibliografia
  • [1] FREYBERG M., HERMWILLE M., HONG U.-S., LI J., SEMIX and SKYPER – an intelligent IGBT module with adaptable driver, The 28th Annual Conference of the IEEE Industrial Electronics Society IECON’02, Seville, 2002.
  • [2] KANELIS K., LORENZ L., STOLZE T., New Low Cost IGBT-Modules, Proceedings on International Conferences ZM Communications GmbH PCIM’01, Nuremberg, 2001.
  • [3] KANSCHAT P., STOLZE T., PASSE T., R_THING H., UMBACH F., HELLMUND O., 600V IGBT3-Technology in New Low Cost Modules for Consumer Drives Applications, Proceedings on International Conferences ZM Communications GmbH PCIM’03, Nuremberg, 2003.
  • [4] KNAPCZYK M., PIENKOWSKI K., Hardware Application of AC/DC Converter Based on Intelligent Power Module and DSP Controller, Scientific Papers of the Institute of Electrical Machines, Drives and Metrology of the Wroclaw University of Technology, No. 59, Studies and Research, No. 26, Wroclaw, 2006, pp.182-193.
  • [5] KNAPCZYK M., PIENKOWSKI K., Robust Current Control Technique for Boos-Type AC-DC line-side Converter with Sliding-Mode Voltage Observer, Scientific Papers of the Institute of Electrical Machines, Drives and Metrology of the Wrocław University of Technology, No. 57, Studies and Research, No. 25, Wroclaw, 2005, pp.381-392.
  • [6] LASKA T., MÜNZER M., RUPP R., RÜTHING H., Review of Power Semiconductor Switches for Hybrid and Fuel Cell Automotive Applications, 1st Conference on Automotive Power Electronics, APE'06, Paris, 2006.
  • [7] LORENZ L., KANELIS K., Design Proposal for Low Power Drives, Proceedings on International Conferences ZM Communications GmbH PCIM’01, Nuremberg, 2001.
  • [8] PASSE T., STOLZE T., LIANG Z., IGBT modules for low cost consumer applications, Proceedings on International Conferences ZM Communications GmbH PCIM’02, Nuremberg, 2002.
  • [9] QIU D. Y., YIP S. C., CHUNG H., HUI S. Y., On the Use of Current Sensors for the Control of Power Converters, IEEE Transactions on Power Electronics, vol.18, no.4, July 2003,pp.1047-1055.
  • [10] Texas Instruments, Code Composer Studio IDE Manuals, IQmath Library, TMS320C28x Manuals, User Guides and Application Reports, www.ti.com.
  • [11] ZHIHONG L., KEGGENHOFF R., EiceDRIVER™ 6ED003E06-F – Evaluatio
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bwmeta1.element.baztech-article-BPW6-0021-0039
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