卫星系统太阳敏感器性能分析

M. Sumathi, Ravi Ranjan, Ramesh Kumar Singh, Prashant Kumar
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引用次数: 4

摘要

该工作主要针对卫星沿1轴的伺服稳定进行。该卫星是一颗高度为2-U的立方体卫星,姿态确定与控制系统(ADCS)是航天器最重要的组成部分。它测量和控制卫星的运动,为天线通信模式提供必要的指向精度。adc取决于传感器部分。各种传感器有太阳传感器、陀螺仪和磁力计。它用于控制卫星的角度旋转,也用于防止可能损坏卫星结构或由于发展应力而缩短其寿命的高自旋速率。本文介绍了太阳传感器的性能分析。太阳传感器是一种科学仪器,用于测量卫星相对于太阳的方向,并保护敏感设备免受太阳光线和干扰。讨论了基于卫星模型稳定的太阳敏感器的SIMULINK模型和实时仿真模型。伺服电机(360°连续旋转)用作沿1轴的致动器。使用的太阳敏感器是BH-1750。它价格便宜,体积小,因此可以很容易地安装在卫星太阳能电池板上。研制了卫星样机,并根据太阳敏感器测得的光强值由伺服电机控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance analysis of sun sensors for satellite systems
This work is mainly proposed for servo stabilization of satellite along 1-axis. The satellite is 2-U cube sat. Attitude determination and control system (ADCS) is the most important part of any spacecraft. It measures and controls the motion of satellite and provides the necessary pointing accuracy to the antenna communication mode. ADCS depends on the sensor section. Various sensors are sun sensor, gyroscope and magnetometer. It is used for controlling the satellite's angular rotation and also to prevent high spin rates that may damage the satellite structure or decrease its lifetime due to developed stresses. This paper describes the performance analysis of sun sensors. A sun sensor is a scientific instrument used to measure the orientation of the satellite with respect to sun and protect the sensitive equipment from sun's ray and interferences. SIMULINK model and real time simulation model of sun sensor based stabilization of satellite model is discussed. Servo motor (360° continuous rotation) is used as an actuator along 1-axis. The sun sensor used is BH-1750. It is inexpensive and very small in size, thus it can be easily mounted on satellite solar panel. A prototype satellite model is developed and it is controlled by servo motor according to light intensity value sensed by sun sensor.
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