Bibliography

Bibliography#

[1]

Armando, Bojoi, Guglielmi, Pellegrino, and Pastorelli. Experimental identification of the magnetic model of synchronous machines. IEEE Trans. Ind. Appl., 2013. doi:10.1109/TIA.2013.2258876.

[2]

Awan, Hinkkanen, Bojoi, and Pellegrino. Stator-flux-oriented control of synchronous motors: a systematic design procedure. IEEE Trans. Ind. Appl., 2019. doi:10.1109/TIA.2019.2927316.

[3]

Awan, Saarakkala, and Hinkkanen. Flux-linkage-based current control of saturated synchronous motors. IEEE Trans. Ind. Appl., 2019. doi:10.1109/TIA.2019.2919258.

[4]

Awan, Song, Saarakkala, and Hinkkanen. Optimal torque control of saturated synchronous motors: plug-and-play method. IEEE Trans. Ind. Appl., 2018. doi:10.1109/TIA.2018.2862410.

[5]

Bae and Sul. A compensation method for time delay of full-digital synchronous frame current regulator of PWM AC drives. IEEE Trans. Ind. Appl., 2003. doi:10.1109/TIA.2003.810660.

[6]

Bolognani and Zigliotto. Novel digital continuous control of SVM inverters in the overmodulation range. IEEE Trans. Ind. Appl., 1997. doi:10.1109/28.568019.

[7]

Buso and Mattavelli. Digital Control in Power Electronics. Morgan & Claypool, 2nd ed. edition, 2015. doi:10.2200/S00637ED1V01Y201503PEL007.

[8]

Capecchi, Guglielmo, Pastorelli, and Vagati. Position-sensorless control of the transverse-laminated synchronous reluctance motor. IEEE Trans. Ind. Appl., 2001. doi:10.1109/28.968190.

[9]

Briz del Blanco, Degner, and Lorenz. Dynamic analysis of current regulators for AC motors using complex vectors. IEEE Trans. Ind. Appl., 1999. doi:10.1109/28.806058.

[10]

Franklin, Powell, and Workman. Digital Control of Dynamic Systems. Addison-Wesley, Menlo Park, CA, USA, 1997.

[11]

Harnefors. Design and analysis of general rotor-flux-oriented vector control systems. IEEE Trans. Ind. Electron., 2001. doi:10.1109/41.915417.

[12]

Harnefors, Kukkola, Routimo, Hinkkanen, and Wang. A universal controller for grid-connected voltage-source converters. IEEE J. Emerg. Sel. Topics Power Electron., 2021. doi:10.1109/JESTPE.2020.3039407.

[13]

Harnefors and Nee. Model-based current control of ac machines using the internal model control method. IEEE Trans. Ind. Appl., 1998. doi:10.1109/28.658735.

[14]

Harnefors, Rahman, Hinkkanen, and Routimo. Reference-feedforward power-synchronization control. IEEE Trans. Power Electron., 2020. doi:10.1109/TPEL.2020.2970991.

[15]

Harnefors, Saarakkala, and Hinkkanen. Speed control of electrical drives using classical control methods. IEEE Trans. Ind. Appl., 2013. doi:10.1109/TIA.2013.2244194.

[16]

Harnefors, Yepes, Vidal, and Doval-Gandoy. Passivity-based controller design of grid-connected VSCs for prevention of electrical resonance instability. IEEE Trans. Ind. Electron., 2015. doi:10.1109/TIE.2014.2336632.

[17]

Hava, Kerkman, and Lipo. Simple analytical and graphical methods for carrier-based PWM-VSI drives. IEEE Trans. Ind. Appl., 1999. doi:10.1109/63.737592.

[18]

Hinkkanen, Harnefors, and Kukkola. Fundamentals of electric machine drives. lecture notes, 2024. doi:10.5281/zenodo.10609166.

[19]

Hinkkanen, Harnefors, and Luomi. Reduced-order flux observers with stator-resistance adaptation for speed-sensorless induction motor drives. IEEE Trans. Power Electron., 2010. doi:10.1109/TPEL.2009.2039650.

[20]

Hinkkanen, Pescetto, Mölsä, Saarakkala, Pellegrino, and Bojoi. Sensorless self-commissioning of synchronous reluctance motors at standstill without rotor locking. IEEE Trans. Ind. Appl., 2017. doi:10.1109/TIA.2016.2644624.

[21]

Hinkkanen, Saarakkala, Awan, Mölsä, and Tuovinen. Observers for sensorless synchronous motor drives: framework for design and analysis. IEEE Trans. Ind. Appl., 2018. doi:10.1109/TIA.2018.2858753.

[22]

Holtz. Pulsewidth modulation for electronic power conversion. Proc. IEEE, 1994. doi:10.1109/5.301684.

[23]

Hur, Jung, and Nam. A fast dynamic DC-link power-balancing scheme for a PWM converter-inverter system. IEEE Trans. Ind. Electron., 2001. doi:10.1109/41.937412.

[24]

Jahns, Kliman, and Neumann. Interior permanent-magnet synchronous motors for adjustable-speed drives. IEEE Trans. Ind. Appl., 1986. doi:10.1109/TIA.1986.4504786.

[25]

Jones and Lang. A state observer for the permanent-magnet synchronous motor. IEEE Trans. Ind. Electron., 1989. doi:10.1109/41.31500.

[26]

Kaura and Blasko. Operation of a phase locked loop system under distorted utility conditions. IEEE Trans. Ind. Appl., 1997. doi:10.1109/28.567077.

[27]

Kim, Harke, and Lorenz. Sensorless control of interior permanent-magnet machine drives with zero-phase lag position estimation. IEEE Trans. Ind. Appl., 2003. doi:10.1109/TIA.2003.818966.

[28]

Kukkola, Routimo, Hinkkanen, and Harnefors. A voltage-sensorless controller for grid converters. In IEEE PES ISGT Europe. 2021. doi:10.1109/ISGTEurope52324.2021.9640206.

[29]

Lee, Lee, Lee, Jin, and Yoon. Estimation of flux saturation model for SynRMs using artificial neural network. IEEE Trans. Ind. Appl., 2025. doi:10.1109/TIA.2025.3532412.

[30]

Lelli, Hinkkanen, and Giulii Capponi. A saturation model based on a simplified equivalent magnetic circuit for permanent magnet machines. In Proc. ICEM. 2024. doi:10.1109/ICEM60801.2024.10700403.

[31]

Lorenz and Van Patten. High-resolution velocity estimation for all-digital, ac servo drives. IEEE Trans. Ind. Appl., 1991. doi:10.1109/28.85485.

[32]

Meyer and Böcker. Optimum control for interior permanent magnet synchronous motors (ipmsm) in constant torque and flux weakening range. In Proc. EPE-PEMC. 2006. doi:10.1109/EPEPEMC.2006.4778413.

[33]

Nurminen, Mourouvin, Hinkkanen, and Kukkola. Multifunctional grid-forming converter control based on a disturbance observer. IEEE Trans. Power Electron., 2024. doi:10.1109/TPEL.2024.3433503.

[34]

Pellegrino, Armando, and Guglielmi. Direct flux field-oriented control of IPM drives with variable DC link in the field-weakening region. IEEE Trans. Ind. Appl., 2009. doi:10.1109/TIA.2009.2027167.

[35]

Piippo, Hinkkanen, and Luomi. Analysis of an adaptive observer for sensorless control of interior permanent magnet synchronous motors. IEEE Trans. Ind. Electron., 2008. doi:10.1109/TIE.2007.911949.

[36]

Qu, Ranta, Hinkkanen, and Luomi. Loss-minimizing flux level control of induction motor drives. IEEE Trans. Ind. Appl., 2012. doi:10.1109/TIA.2012.2190818.

[37]

Rahman, Pirsto, Kukkola, Hinkkanen, Pérez-Estévez, and Doval-Gandoy. Equivalence of the integrator-based and disturbance-observer-based state-space current controllers for grid converters. IEEE Trans. Ind. Electron., 2021. doi:10.1109/TIE.2020.2988194.

[38]

Saarakkala and Hinkkanen. Identification of two-mass mechanical systems using torque excitation: design and experimental evaluation. IEEE Trans. Ind. Appl., 2015. doi:10.1109/TIA.2015.2416128.

[39]

Salomäki, Hinkkanen, and Luomi. Sensorless control of induction motor drives equipped with inverter output filter. IEEE Trans. Ind. Electron., 2006. doi:10.1109/TIE.2006.878314.

[40]

Skogestad and Postlethwaite. Multivariable Feedback Control: Analysis and Design. John Wiley and Sons, West Sussex, England, 1996.

[41]

Slemon. Modelling of induction machines for electric drives. IEEE Trans. Ind. Appl., 1989. doi:10.1109/28.44251.

[42]

Tiitinen, Hinkkanen, and Harnefors. Design framework for sensorless control of synchronous machine drives. IEEE Trans. Ind. Electron., 2025. doi:10.1109/TIE.2024.3429650.

[43]

Tiitinen, Hinkkanen, and Harnefors. Sensorless flux-vector control framework: an extension for induction machines. IEEE Trans. Ind. Electron., 2025. doi:10.1109/TIE.2025.3559958.

[44]

Tuovinen, Awan, Kukkola, Saarakkala, and Hinkkanen. Permanent-magnet flux adaptation for sensorless synchronous motor drives. In Proc. IEEE SLED. 2018. doi:10.1109/SLED.2018.8485899.

[45]

Varatharajan, Pellegrino, and Armando. Direct flux vector control of synchronous motor drives: accurate decoupled control with online adaptive maximum torque per ampere and maximum torque per volts evaluation. IEEE Trans. Ind. Electron., 2022. doi:10.1109/TIE.2021.3060665.

[46]

Verghese and Sanders. Observers for flux estimation in induction machines. IEEE Trans. Ind. Electron., 1988. doi:10.1109/41.3067.

[47]

Woo, Park, Choi, Lee, and Yoon. Flux saturation model including cross saturation for synchronous reluctance machines and its identification method at standstill. IEEE Trans. Ind. Electron., 2023. doi:10.1109/TIE.2022.3174233.