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Stacks of many solar panels are usually deployed to harness the sun’s energy and convert it into electricity. Collecting the power from many solar panels is a challenge for many reasons.
Firstly, the solar panels are usually arranged in a way that does not create a strong directionality for the collected energy. Many solar panels are arranged in a manner that is proportional to the sun’s movement and the natural forces of the earth. This implies that the solar panels are not arranged in a way that creates a strong directionality for the collected energy.
Secondly, collecting all of the energy from many solar panels can create a very large electricity demand. For example, solar panels that are arranged in a way that is proportional to the sun’s movement create a very large electricity demand. Also, solar panels that are generally flat and face away from the sun when in use generate a very small amount of electricity, which cannot be easily collected.
Thirdly, solar panels have to be designed to meet a range of conditions for use in a suitable environment. For example, the panels need to withstand the sun and other extreme environmental conditions. Designing solar panels to withstand the sun and other extreme environmental conditions implies that the surface area of a solar panel and the mechanical components such as the hinges, joints and the connection points are generally large. The large surface area and the mechanical components tend to block the sun’s energy. Thus, in order to harvest the sun’s energy efficiently, the solar panels need to be designed in a way that allows for efficient energy collection, without blocking the sun’s energy.
Finally, the environmental conditions in which solar panels are used also need to be considered. For example, in the sunniest parts