Event-Triggered Adaptive Sliding Mode Attitude Containment Control for Microsatellite Cluster under Directed Graph

In order to investigate the attitude containment control problem for a microsatellite cluster, an event-triggered adaptive sliding mode attitude containment control algorithm is proposed for the satellite cluster flight system under directed topology, so that attitude of followers asymptotically con...

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Main Authors: Fengzhi Guo, Shijie Zhang, Tingting Zhang, Anhui Zhang
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:Mathematical Problems in Engineering
Online Access:http://dx.doi.org/10.1155/2021/6652342
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spelling doaj-31fa188ef92041ab949da497674a96722021-03-15T00:00:49ZengHindawi LimitedMathematical Problems in Engineering1563-51472021-01-01202110.1155/2021/6652342Event-Triggered Adaptive Sliding Mode Attitude Containment Control for Microsatellite Cluster under Directed GraphFengzhi Guo0Shijie Zhang1Tingting Zhang2Anhui Zhang3Research Center of Satellite TechnologyResearch Center of Satellite TechnologyResearch Center of Satellite TechnologySchool of AstronauticsIn order to investigate the attitude containment control problem for a microsatellite cluster, an event-triggered adaptive sliding mode attitude containment control algorithm is proposed for the satellite cluster flight system under directed topology, so that attitude of followers asymptotically converges to the convex hull formed by the leaders’ orientations. At first, the event-triggered control strategy is introduced into the attitude containment control problem for the microsatellite cluster. The triggering condition consisting of state-dependent and time-dependent function is designed to adjust control period and avoid the Zeno behaviour. When the function value meets the triggering condition, the event is triggered, state information is sampled, control law is computed, and actuators are updated, while the control action performed in nontriggering time is the same as the previous triggering instant. Then, in the presence of model uncertainties and external disturbances, an event-triggered adaptive sliding mode attitude containment control algorithm is presented under directed topology, and sufficient and necessary conditions for the followers to enter into the target area formed by the leaders are given. Furthermore, cell partitions from graph theory are employed to investigate the influence of information topology on steady states of followers, which provides theoretical basis for orientation design of cluster satellites. Finally, simulation results show that the proposed control strategy could reduce control execution frequency, as well as ensure the similar control performance with the time-triggered one, and followers belonging to the same cell have the same steady states.http://dx.doi.org/10.1155/2021/6652342
collection DOAJ
language English
format Article
sources DOAJ
author Fengzhi Guo
Shijie Zhang
Tingting Zhang
Anhui Zhang
spellingShingle Fengzhi Guo
Shijie Zhang
Tingting Zhang
Anhui Zhang
Event-Triggered Adaptive Sliding Mode Attitude Containment Control for Microsatellite Cluster under Directed Graph
Mathematical Problems in Engineering
author_facet Fengzhi Guo
Shijie Zhang
Tingting Zhang
Anhui Zhang
author_sort Fengzhi Guo
title Event-Triggered Adaptive Sliding Mode Attitude Containment Control for Microsatellite Cluster under Directed Graph
title_short Event-Triggered Adaptive Sliding Mode Attitude Containment Control for Microsatellite Cluster under Directed Graph
title_full Event-Triggered Adaptive Sliding Mode Attitude Containment Control for Microsatellite Cluster under Directed Graph
title_fullStr Event-Triggered Adaptive Sliding Mode Attitude Containment Control for Microsatellite Cluster under Directed Graph
title_full_unstemmed Event-Triggered Adaptive Sliding Mode Attitude Containment Control for Microsatellite Cluster under Directed Graph
title_sort event-triggered adaptive sliding mode attitude containment control for microsatellite cluster under directed graph
publisher Hindawi Limited
series Mathematical Problems in Engineering
issn 1563-5147
publishDate 2021-01-01
description In order to investigate the attitude containment control problem for a microsatellite cluster, an event-triggered adaptive sliding mode attitude containment control algorithm is proposed for the satellite cluster flight system under directed topology, so that attitude of followers asymptotically converges to the convex hull formed by the leaders’ orientations. At first, the event-triggered control strategy is introduced into the attitude containment control problem for the microsatellite cluster. The triggering condition consisting of state-dependent and time-dependent function is designed to adjust control period and avoid the Zeno behaviour. When the function value meets the triggering condition, the event is triggered, state information is sampled, control law is computed, and actuators are updated, while the control action performed in nontriggering time is the same as the previous triggering instant. Then, in the presence of model uncertainties and external disturbances, an event-triggered adaptive sliding mode attitude containment control algorithm is presented under directed topology, and sufficient and necessary conditions for the followers to enter into the target area formed by the leaders are given. Furthermore, cell partitions from graph theory are employed to investigate the influence of information topology on steady states of followers, which provides theoretical basis for orientation design of cluster satellites. Finally, simulation results show that the proposed control strategy could reduce control execution frequency, as well as ensure the similar control performance with the time-triggered one, and followers belonging to the same cell have the same steady states.
url http://dx.doi.org/10.1155/2021/6652342
work_keys_str_mv AT fengzhiguo eventtriggeredadaptiveslidingmodeattitudecontainmentcontrolformicrosatelliteclusterunderdirectedgraph
AT shijiezhang eventtriggeredadaptiveslidingmodeattitudecontainmentcontrolformicrosatelliteclusterunderdirectedgraph
AT tingtingzhang eventtriggeredadaptiveslidingmodeattitudecontainmentcontrolformicrosatelliteclusterunderdirectedgraph
AT anhuizhang eventtriggeredadaptiveslidingmodeattitudecontainmentcontrolformicrosatelliteclusterunderdirectedgraph
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