一种先进水平的卫星导航卫星的设计与导航控制

M. Celebi, Serdar Ay, Mohammed Khalil Ibrahim, M. Aydemir, M. Bensaada, Lewis Hennedige Jayathu Dimuthu Kumara Fernando, H. Akiyama, Shusaku Yamaura
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引用次数: 14

摘要

本文介绍了一种利用业余火箭从地面发射到400米高度的先进水平返回式卫星的设计和导航控制。CanSat使用先进的超轻微控制器、压力和温度传感器、3轴加速度计、3轴陀螺仪、摄像头、GPS、红外距离测量传感器和射频通信模块与地面站PC进行通信。在此工作中考虑了三个致动器用于飞行段和地面段的控制。它们是电机驱动的螺旋桨、升降舵和舵。对于飞行段,降落伞和姿态控制用于控制CanSat的下降速率、姿态和航向。为地面段控制;CanSat的螺旋桨和后起落架都用于向地面上预定的位置前进。后起落架与方向舵旋转轴相连。文中给出了一种自主导航控制系统和电子电路设计,并给出了测试结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and navigation control of an advanced level CANSAT
This paper presents design and navigation control of an advanced level comeback CanSat which is going to be launched to an altitude of about 400 m using an amateur rocket from ground level. The CanSat uses advanced and ultra-light microcontroller, pressure and temperature sensors, 3-axis accelerometer, 3-axis gyro, camera, GPS, IR distance measuring sensor, and RF communication module to communicate with the ground station PC. Three actuators are considered in this work for flight and ground segments control. They are the motor driven propeller, elevator and rudder. For the flight segment, parachute and attitude control are used to control the CanSat descent rate, attitude and heading. For the ground segment control; both the propeller and the rear landing gear of the CanSat is used for heading toward a predefined location on the ground. The rear landing gear is connected to the rudder rotational axis. An indigenous navigation control and electronic circuit design with the test results also are presented in this paper.
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