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PMSM Servo-Drive Fed by SiC MOSFETs Based VSI

Bolognani, S. (2013). Model Predictive Direct Speed Control with Finite Control Set of PMSM Drive Systems. IEEE Transactions on Power Electronics, 28(2), pp. 1007-1015. Sarnowska, A. and Rąbkowski, J. (2016). Hard and soft switching operation of the half-bridge based on 900V SiC MOSFETs. In: IEEE IECON Conference, Italy. pp. 7167-7172. Shin, H.-B. and Park, J.-G. (2012). Anti-Windup PID Controller with Integral State Predictor for Variable- Speed Motor Drives. IEEE Transactions on Industrial Electronics, 59(3), pp. 1509

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APPLICATION OF ARTIFICIAL BEE COLONY ALGORITHM TO AUTO-TUNING OF STATE FEEDBACK CONTROLLER FOR DC-DC POWER CONVERTER

Abstract

The article presents an auto-tuning method of state feedback voltage controller for DC-DC power converter. The penalty matrices employed for calculation of controller’s coefficients were obtained by using nature-inspired artificial bee colony (ABC) optimization algorithm. This overcomes the main drawback of state feedback control related to time-consuming trial-and-error tuning procedure. The optimization algorithm takes into account constraints of selected state and control variables of DC-DC power converter. In order to meet all control objectives (i.e., fast voltage response and chattering-free control signal) an appropriate performance index is proposed. Proper selection of state feedback controller (SFC) coefficients is proven by simulation and experimental tests of DC-DC power converter.

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Extended T-type Inverter

Regenerative Controlled Electric Drives. IEEE Transactions on Industrial Electronics, 59(1), pp. 301-316. Gu, M., Xu, P., Zhang, L. and Sun, K (2015). A SiCbased T-type three-phase three-level grid tied inverter. In: Proceedings of 10th Conference on Industrial Electronics and Applications (ICIEA), Auckland: IEEE, pp. 1116-1121. Gurpinar, E. and Castelazzi, A. (2015). Single-Phase T-Type Inverter Performance Benchmark Using Si IGBTs, SiC MOSFETs and GaN HEMTs. IEEE Transactions on Power Electronics, 31(10), pp. 7148

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The Description of Turn-Off Process and Evaluation of Switching Power Losses in the Ultra Fast Power Mosfet

References [1] RĄBKOWSKI J., PEFTITSIS D., NEE H.-P., Parallel-Operation of Discrete SiC BJTs in a 6-kW/250-kHz DC/DC Boost Converter, IEEE Trans. on Power Electron., 2014, Vol. 29, No. 5, 2482-2491. [2] LI X., ZHANG L., GUO S., LEI Y., HUANG A.Q., ZHANG B., Understanding switching losses in SiC MOSFET: Toward lossless switching, Wide Bandgap Power Devices and Applications (WiPDA), IEEE 3rd Workshop, Blacksburg, 2015, 257-262. [3] HUGHES B. et al., Normally-off GaN switching 400V in 1.4ns using an ultra

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A Multi–Objective Optimization for Performance Improvement of the Z–Source Active Power Filter

/DC-Boost-Converter for Wind Turbines Concerning their Efficiency and Installed Semiconductor Power, in Proc. IEEE PESC, 2008, pp. 1814–1820. [13] WEI, W.—HONGPENG, L.—JIAWAN, Z.—DIANGUO, X. : Analysis of Power Losses in Z-Source PV Grid-Connected Inverter, in Proc. IEEE ICPE & ECCE, Jeju, 2011, pp. 2588–2592. [14] STEINBRING, M.—PACAS, M. : Increasing the Efficiency of a Single Phase Z-Source Inverter by Utilizing SiC-MOSFETs, in Proc. PCIM Europe, Nuremberg, 2014, pp. 706–712. [15] OZPINECI, B.—TOLBERT, L. M.—ISLAM, S. K. : Silicon Carbide Power Device

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Derivation of Motor Mean Phase Currents in PMSM Drives Operating with Low Switching-to-Fundamental Frequency Ratio

. Sobczyński, D. (2016). Review of Solutions Used in High Speed Induction Motor Drives Operating in Household Appliances. Power Electronics and Drives , 1(36), pp. 27–49. Tarczewski, T., Skiwski, M., Grzesiak, L. M. and Zieliński, M. (2018). PMSM Servo-Drive Fed by SIC MOSFETs Based VSI. Power Electronics and Drives , 3(38), pp. 35–45. Vukosavić, S. N., Perić, L. S. and Levi, E. (2016). AC Current Controller with Error-Free Feedback Acquisition System. IEEE Transactions on Energy Conversion , 31, pp. 381–391. Wang, W., Fan, Y., Chen, S. and Zhang, Q

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Finite Element Analysis of Modular Pulse Width Modulation Converters with JAMG Software

, J.; Elasser, A.; Stevanovic, L., "Highvoltage high-frequency inverter using 3.3kV SiC MOSFETs," Power Electronics and Motion Control Conference (EPE/PEMC), 2012 15th International , vol., no., pp.DS2b.6-1,DS2b.6-5, 4-6 Sept. 2012 [11] Jacobs, J.; Detjen, D.; Karipidis, C.-U.; De Doncker, R.W.; , "Rapid prototyping tools for power electronic systems: demonstration with shunt active power filters," Power Electronics, IEEE Transactions on , vol.19, no.2, pp. 500- 507, March 2004 [12] Vagnon, E.; Jeannin, P.-O.; Crebier, J.-C.; Avenas

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Automatic Parameter Extraction Technique for MOS Structures by C-V Characterization Including the Effects of Interface States

Transactions on Electron Devices , 54 (8), 1843-1851. [12] Jurečka, S., Kobayashi, H., Kim, W.B., Takahashi, M., Pinčík, E. (2012). Study of density of interface states in MOS structure with ultrathin NAOS oxide. Central European Journal of Physics , 10 (1), 210-217. [13] Shih, W.C. (2014). Device Simulation of Density of Interface States of Temperature Dependent Carrier Concentration in 4H-SiC MOSFETs. Doctoral Dissertation, Auburn University. [14] Shi, M., Saint-Martin, J., Bournel, A. et al. (2013). Numerical and experimental assessment of charge

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Analysis of Direct Torque Control with pace Vector Modulation for Synchronous Reluctance Motor Motion Control Applications and a Comparison with Other Torque-Control Algorithms

, 61(3), pp. 253–263. doi: 10.3311/PPee.10428 Zelechowski, M., Kazmierkowski, M. P. and Blaabjerg, F. (2005). Controller design for direct torque controlled space vector modulated (DTC-SVM) induction motor drives. In: Proceedings of the IEEE International Symposium on Industrial Electronics (ISIE 2005) , pp. 951–956. doi: 10.1109/ISIE.2005.1529052 Tarczewski, T., Skiwski, M., Grzesiak, L. M. and Zielinski, M. (2018). PMSM Servo-Drive Fed by SiC MOSFETs Based VSI. Power Electronics and Drives , 38(1), pp. 35–45. doi: 10.2478/pead-2018-0001 Zhang, X

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A high electrical performance of DG-MOSFET transistors in 4H-SiC and 6H-SiC 130 nm technology by BSIM3v3 model

Technology, International Journal of Advances in Computer Electronics Engineering 3(11), 18, (2018). [17] J. Steszewski, A. Jakubowski and M. L. K Pawlowski, “Copmarison of 4H-SiC 6H-SiC MOSFET I-V characteristics simulated with Silvaco Atlas Crosslight Apsys, Journal of Telecommunications & Information Technology 7(3), 93-95, (2007). [18] C. A. Abdul Nazar and V. Kannan, “Effect of Dual Gate Mosfet on the Decoder Based Demultiplexer, Journal of Theoretical Applied Information Technology 65(2), 589-594, (2014). [19] Prespice Update – A SPICE

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