A Universal Educational and Research Stand to Simulate Electrical Drive Loading

Universal educational and research stand was developed for analyzing an electrical drive’s behavior with different load disturbance effects. Major components of the stand are two electrical drives with rigidly coupled shafts. As a result, first electrical drive (loader) has a capability to imitate e...

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Main Authors: V. S. Grishin, M. Yu. Orlov, V. A. Polskiy
Format: Article
Language:Russian
Published: MGTU im. N.È. Baumana 2016-09-01
Series:Mašiny i Ustanovki: Proektirovanie, Razrabotka i Èkspluataciâ
Subjects:
Online Access:https://maplants.elpub.ru/jour/article/view/36
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spelling doaj-2681f358bac84474919c80e4be9451d72021-01-13T12:46:54ZrusMGTU im. N.È. BaumanaMašiny i Ustanovki: Proektirovanie, Razrabotka i Èkspluataciâ2412-592X2016-09-010211535A Universal Educational and Research Stand to Simulate Electrical Drive LoadingV. S. Grishin0M. Yu. Orlov1V. A. Polskiy2Bauman Moscow State Technical UniversityBauman Moscow State Technical UniversityBauman Moscow State Technical UniversityUniversal educational and research stand was developed for analyzing an electrical drive’s behavior with different load disturbance effects. Major components of the stand are two electrical drives with rigidly coupled shafts. As a result, first electrical drive (loader) has a capability to imitate effects of different loading types to another one (trial drive).Control software for the stand is developed. It allows us to combine a variety of loading types and change parameters of current loading such as joint moment, damping, additional inertia, and external torque. Also there is a capability to imitate effects of elasticity and backlash of mechanical transmissions. The paper considers the main challenge of creating the given system, i.e. discretization with a variable step. Some methods to decrease its negative effects on system stability are suggested.The given system allows to change loading parameters more rapidly and in a wider range as compared to a system with real mechanical outfit.These stands are currently used for laboratory classes within the course “Electrical robotic drives” at SM7 department in Bauman Moscow State Technical University. Also the system of interdepended stands for semi-realistic simulation of manipulation systems is under development.https://maplants.elpub.ru/jour/article/view/36electrical driveuniversal standload imitationsemirealistic simulation
collection DOAJ
language Russian
format Article
sources DOAJ
author V. S. Grishin
M. Yu. Orlov
V. A. Polskiy
spellingShingle V. S. Grishin
M. Yu. Orlov
V. A. Polskiy
A Universal Educational and Research Stand to Simulate Electrical Drive Loading
Mašiny i Ustanovki: Proektirovanie, Razrabotka i Èkspluataciâ
electrical drive
universal stand
load imitation
semirealistic simulation
author_facet V. S. Grishin
M. Yu. Orlov
V. A. Polskiy
author_sort V. S. Grishin
title A Universal Educational and Research Stand to Simulate Electrical Drive Loading
title_short A Universal Educational and Research Stand to Simulate Electrical Drive Loading
title_full A Universal Educational and Research Stand to Simulate Electrical Drive Loading
title_fullStr A Universal Educational and Research Stand to Simulate Electrical Drive Loading
title_full_unstemmed A Universal Educational and Research Stand to Simulate Electrical Drive Loading
title_sort universal educational and research stand to simulate electrical drive loading
publisher MGTU im. N.È. Baumana
series Mašiny i Ustanovki: Proektirovanie, Razrabotka i Èkspluataciâ
issn 2412-592X
publishDate 2016-09-01
description Universal educational and research stand was developed for analyzing an electrical drive’s behavior with different load disturbance effects. Major components of the stand are two electrical drives with rigidly coupled shafts. As a result, first electrical drive (loader) has a capability to imitate effects of different loading types to another one (trial drive).Control software for the stand is developed. It allows us to combine a variety of loading types and change parameters of current loading such as joint moment, damping, additional inertia, and external torque. Also there is a capability to imitate effects of elasticity and backlash of mechanical transmissions. The paper considers the main challenge of creating the given system, i.e. discretization with a variable step. Some methods to decrease its negative effects on system stability are suggested.The given system allows to change loading parameters more rapidly and in a wider range as compared to a system with real mechanical outfit.These stands are currently used for laboratory classes within the course “Electrical robotic drives” at SM7 department in Bauman Moscow State Technical University. Also the system of interdepended stands for semi-realistic simulation of manipulation systems is under development.
topic electrical drive
universal stand
load imitation
semirealistic simulation
url https://maplants.elpub.ru/jour/article/view/36
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