用于计算太阳位置的便携式系统,基于笔记本电脑,GPS和Python

J. Fonseca-Campos, Leonardo Fonseca-Ruiz, Paola N. Cortez-Herrera
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引用次数: 4

摘要

来自太阳能系统的可再生能源的有效产生很大程度上取决于太阳光线照射到太阳能收集器表面的方向。因此,在任何时间的太阳位置的知识是非常重要的大多数太阳系,包括那些做太阳跟踪。在一些太阳能设备中,用户必须手动提供地理纬度、地理经度、时间和日期的值来完成太阳跟踪或仅仅是了解太阳位置的任务,这可能是繁琐、无效和容易出错的。本文描述了一个使用GPS接收器和用Python编写的太阳位置算法来评估太阳位置的便携式系统的实现。太阳位置的知识对于太阳能系统的控制和操作是非常重要的。算法结果为太阳轨迹、太阳方位角、太阳高度角、经纬度、实际时间和日出日落时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Portable system for the calculation of the sun position based on a laptop, a GPS and Python
The efficient generation of renewable energy coming from a solar system depends strongly on the direction at which the sun rays strike the surface of the solar collector. Therefore, the knowledge at any time of the sun position is very important for most solar systems including those doing sun tracking. In several solar devices, the user manually must provide the values of geographical latitude, geographical longitude, time and date to do tasks as solar tracking or just to know the sun position, which can be tedious, ineffective and error prone. This paper describes the implementation of a portable system to evaluate the sun position using a GPS receiver and a sun position algorithm programmed in Python. The knowledge of the sun position is important to control and operate the solar energy systems. The algorithm results are the sun trajectory, solar azimuth angle, solar altitude angle, latitude, longitude, actual time and sunrise-sunset times.
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