DEVICE FOR DETERMINING PARAMETERS OF A DIRECT CURRENT MOTOR Russian patent published in 2020 - IPC G01R31/34 

Abstract RU 2718708 C1

FIELD: engine building.

SUBSTANCE: invention relates to the field of automated electric drives and can be used for construction of adaptive control systems of DC motors. Device for determining parameters of a DC electric motor comprises a current sensor and a voltage sensor, which are connected to the armature winding of the electric motor, as well as output shaft rpm sensor installed on electric motor output shaft, memory unit, differentiation unit, first and second time delay units, electric parameters determination unit and electromechanical parameters determination unit connected to computer. Control inputs of unit for determination of electric parameters and memory unit are connected to electric motor control system.

EFFECT: technical result is determining in real time of a number of parameters of an electric motor.

1 cl, 1 dwg

Similar patents RU2718708C1

Title Year Author Number
METHOD FOR DETERMINING PARAMETERS OF A DC ELECTRIC MOTOR 2022
  • Antyaskin Dmitrij Ilich
  • Bolovin Evgenij Vladimirovich
  • Glazyrin Aleksandr Savelevich
RU2789019C1
METHOD FOR DETERMINING PARAMETERS OF A DIRECT CURRENT MOTOR 2019
  • Glazyrin Aleksandr Savelevich
  • Bolovin Evgenii Vladimirovich
  • Antiaskin Dmitrii Ilich
RU2705939C1
METHOD FOR DETERMINING PARAMETERS OF ASYNCHRONOUS ELECTRIC MOTOR 2014
  • Bolovin Evgenij Vladimirovich
  • Glazyrin Aleksandr Savel'Evich
  • Glazyrina Tat'Jana Anatol'Evna
  • Polishchuk Vladimir Iosifovich
RU2564692C1
METHOD FOR DETERMINING PARAMETERS OF ASYNCHRONOUS ELECTRIC MOTOR 2012
  • Glazyrin Aleksandr Savel'Evich
  • Glazyrina Tat'Jana Anatol'Evna
  • Timoshkin Vadim Vladimirovich
  • Tkachuk Roman Jur'Evich
  • Polishchuk Vladimir Iosifovich
RU2502079C1
METHOD OF DETERMINATION OF PARAMETERS OF INDUCTION MOTOR 2014
  • Bolovin Evgenij Vladimirovich
  • Glazyrin Aleksandr Savel'Evich
  • Glazyrina Tat'Jana Anatol'Evna
  • Polishchuk Vladimir Iosifovich
RU2570363C1
DEVICE FOR OBTAINING ROTOR SPEED ESTIMATION SIGNAL AND SIGNAL FOR ESTIMATING MOMENT OF RESISTANCE ON SHAFT OF SYNCHRONOUS ELECTRIC MOTOR WITH PERMANENT MAGNETS 2024
  • Glazyrin Aleksandr Savelevich
  • Bolovin Evgenii Vladimirovich
  • Kladiev Sergei Nikolaevich
  • Kopyrin Vladimir Anatolevich
  • Kovalev Vladimir Zakharovich
  • Filipas Aleksandr Aleksandrovich
  • Timoshkin Vadim Vladimirovich
  • Arkhipova Olga Vladimirovna
  • Popov Semen Semenovich
  • Popov Evgenii Igorevich
  • Nabunskii Ivan Albertovich
  • Kuznetsov Maksim Sergeevich
  • Rakov Ivan Vitalevich
RU2825800C1
METHOD OF OBTAINING SIGNAL FOR ESTIMATING ROTOR SPEED AND SIGNAL FOR ESTIMATING MOMENT OF RESISTANCE ON ASYNCHRONOUS MOTOR SHAFT 2023
  • Glazyrin Aleksandr Savelevich
  • Bolovin Evgenii Vladimirovich
  • Kladiev Sergei Nikolaevich
  • Kopyrin Vladimir Anatolevich
  • Kovalev Vladimir Zakharovich
  • Filipas Aleksandr Aleksandrovich
  • Timoshkin Vadim Vladimirovich
  • Arkhipova Olga Vladimirovna
  • Popov Semen Semenovich
  • Popov Evgenii Igorevich
  • Nabunskii Ivan Albertovich
  • Rakov Ivan Vitalevich
RU2822608C1
MAGNETIC FIELD SENSOR WITH FREQUENCY OUTPUT BASED ON MAGNETIC TRANSISTOR 2023
  • Ivanov Dmitrii Nikolaevich
  • Leonov Aleksei Vladimirovich
RU2815185C1
STABILIZED THYRATRON ELECTRIC DRIVE 0
  • Grejvulis Yanis Polikarpovich
  • Dirba Yan Arvidovich
  • Petrov Sergej Sergeevich
SU1467726A1
AUTOMATIC CONTROL DEVICE FOR ELECTROMECHANICAL SYSTEM WITH GAP IN KINEMATIC TRANSMISSION (OPTIONS) 2022
  • Tararykin Sergej Vyacheslavovich
  • Apolonskij Vladimir Viktorovich
  • Terekhov Anatolij Ivanovich
RU2783736C1

RU 2 718 708 C1

Authors

Glazyrin Aleksandr Savelevich

Bolovin Evgenii Vladimirovich

Antiaskin Dmitrii Ilich

Bunkov Dmitrii Sergeevich

Rakov Ivan Vitalevich

Slepnev Ivan Georgievich

Kladiev Sergei Nikolaevich

Dates

2020-04-14Published

2019-10-01Filed