dr inż. Grzegorz Kostro | Politechnika Gdańska

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dr inż. Grzegorz Kostro

Kontakt:

email:
grzkostr@pg.edu.pl
strona:
https://mostwiedzy.pl/grzegorz-kostro,20376-1

Zajmowane stanowiska:

Adiunkt

miejsce pracy:
Katedra Energoelektroniki i Maszyn Elektrycznych
Budynek A Wydziału Elektrotechniki i Automatyki, EM-313
telefon:
(58) 347 11 57

Pełnione funkcje:

Kierownik Ośrodka Doświadczalnego

dr inż. Grzegorz Kostro

Publikacje:

  1. Publikacja

    This article proposes multi-scalar variables based predictive control of sensorless multiphase interior permanent magnet synchronous machine. Estimated parameters from adaptive observers are used to implement the proposed control scheme. The control approach is divided into two parts: for the fundamental plane, torque and its dual quantity from the multi-scalar model are directly predicted by the controller, and torque density...

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  2. Purpose – The purpose of this paper is to provide an analysis of the performance of a new five-phase doubly fed induction generator (DFIG). Design/methodology/approach – This paper presents the results of a research work related to fivephase DFIG framing, including the development of an analytical model, FEM analysis as well as the results of laboratory tests of the prototype. The proposed behavioral level analytical model is based...

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  3. Calculating the stator end-winding leakage inductance, taking into account the rotor, is difficult due to the irregular shape of the end-winding. The end-winding leakage may distribute at the end of the active part and the fringing flux of the air gap. The fringing flux belongs to the main flux but goes into the end-winding region. Then, not all the magnetic flux occurring in the end region is the end-winding leakage flux. The...

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  4. The paper presents the concept of the new design of the five-phase brushless doubly fed induction generator. The generator is dedicated to the modern wind turbine. The innovative design approach uses a five-phase power supply from the stator control winding side of the generator with a stator three-phase classic power winding. The research results presented indicate that the electromagnetic coupling between the control and power...

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  5. This paper presents the research into the design and performance analysis of a novel five-phase doubly-fed induction generator (DFIG). The designed DFIG is developed based on standard induction motor components and equipped with a five-phase rotor winding supplied from the five-phase inverter. This approach allows the machine to be both efficient and reliable due to the ability of the five-phase rotor winding to operate during...

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