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Dynamic Performance Improvement for Permanent Magnet Generator System Using Current Compensating Method With Two-Degrees-of-Freedom Control., , , и . IEEE Trans. Ind. Electron., 68 (4): 2823-2833 (2021)Reduction of Field-Winding-Induced Voltage in a Doubly Salient Brushless DC Generator With Stator-Damper Winding., , , и . IEEE Trans. Ind. Electron., 69 (8): 7767-7775 (2022)Design and Control of a Piezo Drill for Robotic Piezo-Driven Cell Penetration., , , , , , , , , и . IEEE Robotics Autom. Lett., 5 (2): 339-345 (2020)The 6 layers stereo garage design based on omron PLC., , и . EMEIT, стр. 2682-2685. IEEE, (2011)Calculation and analysis of iron loss in Doubly Salient Brushless DC generator., , и . IECON, стр. 2650-2655. IEEE, (2013)Maximum torque control of hybrid excitation synchronous machine drives based on field current self-optimizing method., и . IECON, стр. 2977-2982. IEEE, (2013)Robotic fluidic jet for automated cellular and intracellular mechanical characterization., , , , , , , , , и . ICIA, стр. 462-467. IEEE, (2016)Lattice-Based Secret Handshakes with Reusable Credentials., , , и . ICICS (2), том 12919 из Lecture Notes in Computer Science, стр. 231-248. Springer, (2021)Investigation of dual-inverter-fed drives for permanent magnet synchronous motor with winding switching., , , и . IECON, стр. 709-714. IEEE, (2014)Fault-tolerant control without extra hardware for doubly salient brushless DC motor drive under open-circuit faults., , , и . IECON, стр. 2790-2795. IEEE, (2016)