Modeling orbital tether system deployment with limitations on the deployment speed
The problem of modeling the operation of special equipment intended for modeling orbital tether system deployment is studied. During the deployment of an orbital tether system the tether tension force control program is used that takes into account limitations on the deployment velocity. A parametri...
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Samara National Research University
2016-04-01
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doaj-67692f61a24343ee8948cfb2746694692021-08-25T09:12:03ZengSamara National Research UniversityВестник Самарского университета: Аэрокосмическая техника, технологии и машиностроение2542-04532541-75332016-04-01151647210.18287/2412-7329-2016-15-1-64-722853Modeling orbital tether system deployment with limitations on the deployment speedS. A. Ishkov0G. A. Filippov1Xu Xiaoye2Samara State Aerospace UniversitySamara State Aerospace UniversitySamara State Aerospace UniversityThe problem of modeling the operation of special equipment intended for modeling orbital tether system deployment is studied. During the deployment of an orbital tether system the tether tension force control program is used that takes into account limitations on the deployment velocity. A parametric boundary problem is solved for the program of controlling the deployment of an orbital tether system. A kinematic scheme of the equipment, consisting of an engine that simulates the Earths gravitation and a tether deployment mechanism, is created. Based on the kinematic scheme, a dynamic scheme with control path feedback on tether deployment velocity and tether tension is created. The deviation control principle is implemented: control is realized on the deviation of the real value of the parameter under consideration from its program value. The magnification ratio of the controlled value deviation from the program values is used as the controlled value in transient optimization. The numerical simulation of the test bench operation performed in the MapleSim 7 environment shows acceptable quality of transient tether deployment velocity and tether tension.https://journals.ssau.ru/vestnik/article/viewFile/3020/2971оrbital tether system deploymenttether tensiondeployment velocitytransientmodelingtest bench |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
S. A. Ishkov G. A. Filippov Xu Xiaoye |
spellingShingle |
S. A. Ishkov G. A. Filippov Xu Xiaoye Modeling orbital tether system deployment with limitations on the deployment speed Вестник Самарского университета: Аэрокосмическая техника, технологии и машиностроение оrbital tether system deployment tether tension deployment velocity transient modeling test bench |
author_facet |
S. A. Ishkov G. A. Filippov Xu Xiaoye |
author_sort |
S. A. Ishkov |
title |
Modeling orbital tether system deployment with limitations on the deployment speed |
title_short |
Modeling orbital tether system deployment with limitations on the deployment speed |
title_full |
Modeling orbital tether system deployment with limitations on the deployment speed |
title_fullStr |
Modeling orbital tether system deployment with limitations on the deployment speed |
title_full_unstemmed |
Modeling orbital tether system deployment with limitations on the deployment speed |
title_sort |
modeling orbital tether system deployment with limitations on the deployment speed |
publisher |
Samara National Research University |
series |
Вестник Самарского университета: Аэрокосмическая техника, технологии и машиностроение |
issn |
2542-0453 2541-7533 |
publishDate |
2016-04-01 |
description |
The problem of modeling the operation of special equipment intended for modeling orbital tether system deployment is studied. During the deployment of an orbital tether system the tether tension force control program is used that takes into account limitations on the deployment velocity. A parametric boundary problem is solved for the program of controlling the deployment of an orbital tether system. A kinematic scheme of the equipment, consisting of an engine that simulates the Earths gravitation and a tether deployment mechanism, is created. Based on the kinematic scheme, a dynamic scheme with control path feedback on tether deployment velocity and tether tension is created. The deviation control principle is implemented: control is realized on the deviation of the real value of the parameter under consideration from its program value. The magnification ratio of the controlled value deviation from the program values is used as the controlled value in transient optimization. The numerical simulation of the test bench operation performed in the MapleSim 7 environment shows acceptable quality of transient tether deployment velocity and tether tension. |
topic |
оrbital tether system deployment tether tension deployment velocity transient modeling test bench |
url |
https://journals.ssau.ru/vestnik/article/viewFile/3020/2971 |
work_keys_str_mv |
AT saishkov modelingorbitaltethersystemdeploymentwithlimitationsonthedeploymentspeed AT gafilippov modelingorbitaltethersystemdeploymentwithlimitationsonthedeploymentspeed AT xuxiaoye modelingorbitaltethersystemdeploymentwithlimitationsonthedeploymentspeed |
_version_ |
1721196633061851136 |