嵌入式氦气球大气观测系统的设计与实现

S. Alam, Akib Jayed Islam, Md. Mahmudul Hasan, Md Mehedi Farhad
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引用次数: 3

摘要

为了进行任何与太空有关的研究,如监视和通信,发射大功率火箭,地理成像甚至太空探索,有必要了解不同大气层的最佳天气条件。测量大气状况最常用的方法之一是使用气象气球。当然,这可以通过使用现代卫星技术来实现。但是,举例来说,卫星只能提供陆地表面的温度。因此,它限制了提供不同大气水平温度剖面或急流风速的精确测量的可能性。一个由不同传感器组成的嵌入式系统能够在氦气球的帮助下提供不同高度的温度、压力和相对湿度的分布图。本文设计并实现了一个远程控制嵌入式系统。射频发射器与气球有效载荷上的传感器相连,气球有效载荷将测量结果发送回地面跟踪天线,并设置无线电频率。显示部分接收传输的数据进行进一步处理并获取图形结果。在以前关于这一主题的研究论文中,没有从实验中获得的天气数据的图形表示,我们已经用图形表示讨论了实验的结果。
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 Implementation of an Embedded System to Observe the Atmospheric Condition using a Helium Balloon
For conducting any space-related research such as surveillance and communication, launching high power rocket, geographical imaging or even space exploration, it is necessary to know the optimal weather condition at different levels of the atmosphere. One of the most commonly used methods for measuring the atmospheric conditions is using a weather balloon. Of course, this can be done by using modern-day satellite technology. But satellite, for example, provides temperature only on the land surface. As a result, it limits the possibility of providing accurate measurements on temperature profile at different levels of atmosphere or wind speed of the jet stream. An embedded system consists of different sensors is capable of providing profiles of temperature, pressure and relative humidity at different altitude with the help of a helium balloon. In this paper, we have designed and implemented a remotely controlled embedded system. The RF transmitter is linked with the sensors on board of the balloon payload, which sends the measurements back to a ground tracking antenna on a set radio frequency. The display section receives the transmitted data for further processing and acquiring graphical results. In previous research papers on this topic, there was no graphical representation of acquired weather data from the experiment where we have discussed the outcome of the experiment with graphical representation.
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