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A green base station with a cylindrical flexible photovoltaic (PV) module mounted to a telecommunication pole is developed. The present paper proposes a method for calculating the power output of the cylindrical flexible PV module mounted to a telecommunication pole and describes the effects of the setting position of the PV module and height to diameter ratio of the pole on its power output taking...
Reducing the power consumed by base stations is an urgent requirement. Our research shows that it is possible to reduce electricity consumption, especially peak loads, by predicting the power demands of base stations. This approach is implemented in the Green Power Controller, a technique developed for the Green Base Station which is the power system of base stations used for disaster relief and reducing...
Today, electricity distribution and communication networks are getting more tightly integrated as smart grids evolve. From time to time, extreme weather conditions such as severe wind and snow storms cause large outages in electricity distribution networks in Northern countries. Loss of electricity can hinder remote control of grid entities and causes a chain-effect that jeopardizes energy generation,...
The number of telecommunication base stations is increasing all over the world due to an ever increasing communication demand. As a result, energy savings play an important role in our future and sustainable network architecture. In a typical base station, electronics cooling normally accounts for 25–50% of the total energy consumption, traditionally provided by air conditioning systems. The service...
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