![]() Eventually, you can also expand it into a bigger project to share the data with your fellow researchers or enthusiasts. Those who feel engaged and invested enough to enhance the setup can also go ahead and set up a web server for their Raspberry Pi weather station to ensure it doesn't need to rely on a WLAN network to record and read these values. ![]() The base of the project is a Raspberry PI A+ which was chosen by its small consumption, since the idea was that the weather station being powered by solar power. Next step is to measure wind direction and after that wind speed. Open the projects config.py file in your editor and fill in the STATIONID and STATIONKEY fields with your values from your Weather Underground Weather Station, like so: class Config. Initially it reads temperature, pressure and humidity. As a bonus, you can also ensure your weather station gets uninterrupted power by building a DIY power backup using Raspberry Pi. This is a simple project for a weather station. Place the pole at a position where the instruments get airflow that is not restricted by the surrounding buildings.Īfter mounting the weather station, you can start recording the values from the sensors. Then, install the mechanical sensors, including the anemometer, wind vane, and rain gauge, on top of a pole. ![]() ![]() ![]() If you cannot provide wireless connectivity, ensure your Raspberry Pi has an Ethernet port that can be engaged for internet connectivity. Once you have the enclosure handy, ensure a power connection in an area away from rain and the elements. ![]()
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