Development of a Platform with 2 DoF to Assist the Cooperation Between Grounded Mobile Robots and UAVs in Landing Operations

Emerson Kazuyoshi Kaneda, Guido S. Berger, Vítor H. Pinto, Milena Faria Pinto, Murilo Ferreira, Flávio Luiz Rossini, Julia Carvalho Lima · 2024

This paper presents the design and implementation of a two degrees of freedom (2 DoF) self-stabilizer platform based on a bidirectional type, intended to integrate with mobile robots to assist unmanned aerial vehicle (UAV) land operations in irregular grounds with a focus on outdoor environments operations. A study on the kinematics behavior of the bidirectional platform is addressed to improve decisions about the structure. Mind in the hardware and software implementation, the combination of step motors and IMU sensors provides the system with position control, how the step motor actuates over position with an integer number of steps, and a P controller generates an interesting response. This setup enabled the platform to stabilize in grounds with at least positive and negative 15 degrees of slope and maintain stability for UAVs under several operational conditions.

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