Mnuskin Y. Switched reluctance motor with program shaping of outcome characteristics

Українська версія

Thesis for the degree of Candidate of Sciences (CSc)

State registration number

0405U002981

Applicant for

Specialization

  • 05.09.01 - Електричні машини і апарати

07-06-2005

Specialized Academic Board

Д11.052.02

Essay

Object of investigation - switched reluctance motor with microprocessor control. Work aim - improving switched reluctance motor and grounding method of shaping it's base characteristics for providing given modes and technical-economic activities with different load characteristics. Methods of investigation - theoretical analysis of physical processes in the switched reluctance motor; mathematical modeling for dynamical and state services; physical modeling and experimental investigating. In the dissertation for the first time it was offered to shape outcome characteristics switched reluctance motor in dependence from load characteristics at the count of shaping actions in result of comparing current and given coordinates. Method of shaping of power saving-trajectory phases switching was got further development in motiving and braking services on the base of determining efficient values of control parameters. The mathematical model of switched reluctance motor with two energy buffers was improved foranalysis of dynamical and state services. The dependences and combinations of values control parameters was determined, wich provide program shaping of outcome characteristics and shaping of power saving-trajectory phases switching. A practical results of dissertation are concluded in realisation on PC the mathematical model of switched reluctance motor with two energy buffers and program shaping of outcome characteristics for estimation dynamical and state services; grounding areas of application voltage, current and width-phase modes and their combinations; improving of structure and component parts, developing of recommendations to projection switched reluctance motor and making it's physical model. Branch - electromechanics.

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