Automatic VSAT antenna pointing system featured with non-horizontal alignment autocorrect

M. A. Wibisono, Alvin Mustafa, Iskandar, Hendrawan, T. Juhana, A. Munir
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Abstract

This paper presents the development of an automatic pointing system for very small aperture terminal (VSAT) antenna. The system which uses AVR microcontroller as a main controller unit (MCU) is featured with non-horizontal alignment autocorrect. User interface is implemented using android smartphone connected wirelessly to the MCU using bluetooth module. The android smartphone also reads the latitude and longitude position of the VSAT antenna location using global positioning system (GPS) module for calculating the required azimuth and elevation pointing angle to the satellite. In case of non-horizontal aligned VSAT antenna, the calculation of azimuth and elevation angles for alignment autocorrect is provided through additional compass and accelerometer modules. The mechanical system uses elevation-over-azimuth configuration with offset-fed for VSAT antenna parabolic reflector with the diameter of 0.74m. The system has been tested to point towards the Palapa-D satellite located at 113°E. The pointing time takes less than 3 minutes, while the average speed of azimuth and elevation rotations is 6.3° per second with the load of 30kg. The differences of pointing angle obtained from the calculation are 2.7” and 17.3” for azimuth and elevation angles, respectively.
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具有非水平对准自动校正功能的VSAT天线自动指向系统
介绍了一种小孔径终端(VSAT)天线自动指向系统的研制。该系统以AVR单片机为主控制器,具有非水平对中自动校正功能。用户界面采用android智能手机通过蓝牙模块与单片机无线连接实现。android智能手机还使用全球定位系统(GPS)模块读取VSAT天线位置的经纬度位置,以计算所需的卫星方位角和仰角指向角度。对于非水平对准的VSAT天线,通过附加的罗经和加速度计模块提供方位角和仰角的自动校准计算。机械系统为直径为0.74m的VSAT天线抛物面反射器,采用偏馈的俯仰-过方位结构。该系统已经过测试,指向位于东经113°的Palapa-D卫星。瞄准时间小于3分钟,而方位和仰角旋转的平均速度为6.3°/秒,负载为30kg。计算得到的方位角和仰角的指向角差分别为2.7 "和17.3 "。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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