Folgen
Sadjad Madanzadeh
Sadjad Madanzadeh
Research Assistant
Bestätigte E-Mail-Adresse bei cau.ac.kr
Titel
Zitiert von
Zitiert von
Jahr
Application of quadratic linearization state feedback control with hysteresis reference reformer to improve the dynamic response of interior permanent magnet synchronous motors
S Madanzadeh, A Abedini, A Radan, JS Ro
ISA transactions 99, 167-190, 2020
262020
Effect of the magnet shape on the performance of coreless axial flux permanent magnet synchronous generator
S Amin, S Madanzadeh, S Khan, SSH Bukhari, F Akhtar, JS Ro
Electrical Engineering, 1-10, 2022
172022
Towards end-to-end deep learning performance analysis of electric motors
N Gabdullin, S Madanzadeh, A Vilkin
Actuators 10 (2), 28, 2021
102021
Novel Single Inverter-Controlled Brushless Wound Field Synchronous Machine Topology
SSH Bukari, AA Menon, S Madanzadeh, GJ Sirewal, JD Gandoy, JS Ro
Mathematics 9 (15), 17-39, 2021
92021
Cost-Effective Single-Inverter-Controlled Brushless Technique for Wound Rotor Synchronous Machines
SSH Bukhari, GJ Sirewal, S Madanzadeh, JS Ro
IEEE Access, 2020
72020
Symmetric and Asymmetric Configuration of Parallel-Switched d-type Multilevel Inverter
MM Zaid, H Ahmad, S Madanzadeh, JS Ro
IEEE Journal of Emerging and Selected Topics in Power Electronics, 2021
62021
Competitive technology analysis of a double stage kinetic compressor for 0.5 MW heat pumps for industrial and residential heating
RP Jastrzebski, D Kepsu, A Putkonen, I Martikainen, A Zhuravlev, ...
2021 IEEE International Electric Machines & Drives Conference (IEMDC), 1-7, 2021
62021
Multifunctional grid-connected voltage source inverter to drive induction motor operating with high-inertia load
S Madanzadeh, SSH Bukhari, JS Ro
IEEE Access 8, 196765-196774, 2020
52020
Novel sensorless state feedback speed control technique of IPMSM drives
S Madanzadeh, A Abedini, A Radan
4th Annual International Power Electronics, Drive Systems and Technologies …, 2013
52013
Novel control technique of IPMSM using state feedback control with quadratic linearization
S Madanzadeh, A Abedini, A Radan
4th Annual International Power Electronics, Drive Systems and Technologies …, 2013
52013
Self-bearing partitioned stator flux-switching permanent magnet motor
S Madanzadeh, W Gruber, A Zhuravlev, RP Jastrzebski
2022 25th International Conference on Electrical Machines and Systems (ICEMS …, 2022
32022
Fractional order sliding mode control based model predictive current control of multi-phase induction motor drives
I Sami, U ur Rehman, A Shehzadi, N Ahmad, S Ullah, S Madanzadeh
2020 IEEE 23rd International Multitopic Conference (INMIC), 1-6, 2020
32020
Self-bearing linear flux-switching permanent magnet motor for linear motion platform application
S Madanzadeh, W Gruber, RP Jastrzebski
2023 IEEE International Electric Machines & Drives Conference (IEMDC), 1-7, 2023
22023
Implementing a Bearingless Separated-Stator Flux-Switching Slice Motor
S Mallinger, S Madanzadeh, R Jastrzebski, W Gruber
2023 IEEE Energy Conversion Congress and Exposition (ECCE), 3859-3866, 2023
2023
Towards End-to-end Deep Learning Analysis of Electrical Machines
N Gabdullin, S Madanzadeh, A Vilkin
Authorea Preprints, 2023
2023
A Model-Based Direct Force Technique Adopting Force Mapping for a Twin Self-Bearing Motor Control
A Zhuravlev, S Madanzadeh, RP Jastrzebski
2022 International Conference on Electrical Machines (ICEM), 289-294, 2022
2022
Novel Single Inverter-Controlled Brushless Wound Field Synchronous Machine Topology. Mathematics 2021, 9, 1739
SSH Bukhari, AA Memon, S Madanzadeh, GJ Sirewal, J Doval-Gandoy, ...
s Note: MDPI stays neutral with regard to jurisdictional claims in published …, 2021
2021
Speed Control of Interior Permanent Magnet Synchronous Motor in Whole Speed Range Using State Feedback
S Madanzadeh, A Abedini, A Radan
International Power System Conference (PSC), 2012
2012
Applicability of flux switching permanent magnet bearingless motors in present-day and future manufacturing and transportation
RP JASTRZEBSKI, S MADANZADEH, A PUTKONEN, L CHECHURIN, ...
Das System kann den Vorgang jetzt nicht ausführen. Versuchen Sie es später erneut.
Artikel 1–19