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Event-Based Formation Control of Multiple Quadrotors on SO(3)
This paper is concerned with the formation problem of multiple quadrotors, and an event-based control strategy is proposed. The communication topology and relative positions of formation are first considered, and then the model of multiple quadrotors system is developed on the special orthogonal gro...
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Published in: | Mathematical problems in engineering 2018-01, Vol.2018 (2018), p.1-11 |
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container_title | Mathematical problems in engineering |
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creator | Ma, Siqian Wang, Qing Ma, Mingyu Dong, Chaoyang |
description | This paper is concerned with the formation problem of multiple quadrotors, and an event-based control strategy is proposed. The communication topology and relative positions of formation are first considered, and then the model of multiple quadrotors system is developed on the special orthogonal group SO(3). By designing the trigger function, certain events are generated for each quadrotor. Then, the formation controller is driven to update its parameters according to the events. The attitude controller on SO(3) is designed for tracking of the command and stabilization. By the proposed method continuous communication is not required between quadrotors, and it is proved that the quadrotors could achieve the desired formation. Simulation illustrates that the proposed event-based formation control method is effective. |
doi_str_mv | 10.1155/2018/4707219 |
format | article |
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The communication topology and relative positions of formation are first considered, and then the model of multiple quadrotors system is developed on the special orthogonal group SO(3). By designing the trigger function, certain events are generated for each quadrotor. Then, the formation controller is driven to update its parameters according to the events. The attitude controller on SO(3) is designed for tracking of the command and stabilization. By the proposed method continuous communication is not required between quadrotors, and it is proved that the quadrotors could achieve the desired formation. 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subjects | Communication Computer simulation Controllers Fault diagnosis Methods Protocol Rotary wing aircraft Unmanned aerial vehicles Vehicles |
title | Event-Based Formation Control of Multiple Quadrotors on SO(3) |
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