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The solar map alone cost $210,000 and was financed by the federal Department of Energy's Solar America Cities program.
The solar map will allow New Yorkers to type in the address of a building where they live or work and find out how much solar power the roof can yield and at what cost.
The solar map now will offer roof-by-roof information within those zones, allowing planners to locate and aid owners in areas with the highest demand on hot and sunny days.
The rooftop count can then be used to create an online "solar map" that will help assess the city's capacity for solar power and even allow New Yorkers to check if the buildings they work or live in are suitable for solar panels.
"The purpose is to try to give people the tools they need to understand how to adapt solar technology," said Tria Case, director of sustainability for the City University of New York, which has partnered with the city to develop the solar map.
The South African solar map has been redrawn to make it applicable to photovoltaic installations.
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Some cities, including New York, San Francisco, Boston and Madison, Wis., have online solar maps where residents can estimate the solar capacity of their roofs.
Cities like San Francisco have already developed solar maps, and the new Lidar technology is increasingly being adopted by coastal regions around the nation, FEMA officials said.
The selected roofs' shapes guaranteed to get the maximum solar radiation and the solar mapping analysis allows individualizing the most suitable areas to install solar systems on the roofs' surfaces of the entire district.
The method enables the generation of 3D solar maps from two standard data sources, namely cadastral cartography and data on solar irradiance registered by the Spanish State Meteorological Agency (AEMET, for its initials in Spanish).
In the solution there is a dual-axis solar tracking system, based on solar maps, which can predict the exact apparent position of the sun, by latitude location, thereby avoiding the need to use sensors or guidance systems (Abdallah and Nijmeh 2004).
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