Remote Sensing Systems At The Rocket's Payload Test

C. Partha, I. N. Budiastra, A. Amrita, I. M. Suartika
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Abstract

Aviation technology and space is one of the leading technology for developed countries, especially in the form of rocket technology and payload. Countries that are capable of mastering these technologies will be respected by countries all over the world. Indonesia as the island nation and the State's large and extensive maritime already should have independence in the mastery of the technology of the rocket and payload. Therefore, continuous efforts are required to achieve independence, including through enhancing aviation technology and space technology, particularly at early stages the rocket and payload. Remote Sensing Systems At the rocket's Payload was Test remote monitoring system image capture and the attitude of the launch payload through the computer screen (display) continuously (real-time) data obtained from sensors that are mounted on the rocket's payload. 3D point (x, y, z) must be expressed as a graph visualization perspective drawings of rockets with the appropriate direction. The radar conducted computer GS (Ground Segment) or Ground Control Station (GCS). The result of the attitude of the Rocket Test launch Payloads have been able to do the communication data transmission of images and data for 3D (x, y, and z) in real-time to the Ground segment. Wireless communication uses radio telemetry frequency 433 MHz, power of 100 mW, the distance range obtained in this study a maximum of 1000 meter in conditions in the air and without obstruction. 
火箭载荷测试中的遥感系统
航空航天技术是发达国家的领先技术之一,特别是在火箭技术和有效载荷方面。有能力掌握这些技术的国家将受到世界各国的尊重。印度尼西亚作为岛国和幅员辽阔的海洋国家,在掌握火箭技术和有效载荷方面已经应该具有独立性。因此,需要不断努力实现独立,包括通过加强航空技术和空间技术,特别是在火箭和有效载荷的早期阶段。遥感系统在火箭的有效载荷上进行测试,远程监控系统通过计算机屏幕(显示)连续(实时)从安装在火箭有效载荷上的传感器获得的图像捕获和发射有效载荷的姿态。三维点(x, y, z)必须表示为具有适当方向的火箭的图形可视化透视图。雷达指挥计算机GS(地面段)或地面控制站(GCS)。火箭测试发射有效载荷的姿态结果已经能够进行图像和3D (x, y和z)数据的实时通信数据传输到地面段。无线通信采用无线电遥测频率433 MHz,功率100 mW,在空中无障碍物的条件下,本研究获得的距离范围最大可达1000米。
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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