设计用于测量温室气体浓度和记录飞行图像的微微卫星

Juan David Osorio Henao, Johan Jabrini Botina Monsalve, David Andrés Díaz Álvarez, Melissa Galeano Ruiz, Juan Pablo Higuita Echavarría, Luis Felipe Burbano Mosquera
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引用次数: 0

摘要

VoltaX团队由Antioquia大学航空航天工程专业的学生组成,他们为CanSat哥伦比亚2020创新挑战赛(由ieee航空航天和电子系统学会哥伦比亚分会组织)开发了一个CanSat卫星系统,这是一个汽水罐大小的卫星系统。该卫星的设计是为了满足该组织制定的任务要求,其中包括在1000米距离上不断向地面站传输数据,测量温度、线性加速度、磁场和大气压力等变量。此外,使用气体传感器和GoPro相机分别估算甲烷浓度并捕获高质量图像,目的是监测温室气体并将图像用于精准农业应用。使用增材制造和商用现货(cots)电子元件来构建原型,从而最大限度地降低成本。最后对各子系统进行了功能测试,验证了卫星的正常运行。设计的微型卫星以vol4201板为标识,在同类卫星中排名第二。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Picosatélite diseñado para medir concentración de gases de efecto invernadero y registrar imágenes en vuelo
The VoltaX team, made up of Aerospace Engineering students at the University of Antioquia, developed a CanSat —a satellite system the size of a soda can— for the CanSat Colombia 2020 Innovation Challenge, an event organized by the ieee Aerospace and Electronic Systems Society (aess) Colombian Chapter. The satellite was designed to meet the mission requirements established by the organization, which included the constant transmission of data to the earth station at 1,000 m distance, measuring variables such as temperature, linear acceleration, magnetic field, and atmospheric pressure. Additionally, a gas sensor and a GoPro camera were used to estimate methane concentrations and capture high-quality images, respectively, with the purpose of monitoring greenhouse gases and using the images for precision agriculture applications. Additive manufacturing and commercial-off-the-shelf (cots) electronic components were used to build the prototype, thus minimizing costs. Finally, functional tests were carried out on all the subsystems, confirming the correct operation of the CanSat. The designed picosatellite, identified with volt4201 plates, took the second place within its category.
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