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What is Irradiance

Handbook of Research on Solar Energy Systems and Technologies
The direct, diffuse, and reflected solar radiation that strikes a surface.
Published in Chapter:
Artificial Intelligence Techniques for Solar Energy and Photovoltaic Applications
Radian Belu (Drexel University, USA & Desert Research Institute, USA)
Copyright: © 2013 |Pages: 61
DOI: 10.4018/978-1-4666-1996-8.ch015
Abstract
Artificial intelligence (AI) techniques play an important role in modeling, analysis, and prediction of the performance and control of renewable energy. The algorithms employed to model, control, or to predict performances of the energy systems are complicated involving differential equations, large computer power, and time requirements. Instead of complex rules and mathematical routines, AI techniques are able to learn the key information patterns within a multidimensional information domain. Design, control, and operation of solar energy systems require long-term series of meteorological data such as solar radiation, temperature, or wind data. Such long-term measurements are often non-existent for most of the interest locations or, wherever they are available, they suffer of a number of shortcomings (e.g. poor quality of data, insufficient long series, etc.). To overcome these problems AI techniques appear to be one of the strongest candidates. The chapter provides an overview of commonly used AI methodologies in solar energy, with a special emphasis on neural networks, fuzzy logic, and genetic algorithms. Selected AI applications to solar energy are outlined in this chapter. In particular, methods using the AI approach for the following applications are discussed: prediction and modeling of solar radiation, seizing, performances, and controls of the solar photovoltaic (PV) systems.
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More Results
Synchronized Operation of Grid Power, Solar Power, and Battery for Smart Energy Management
The direct, diffuse, and reflected solar radiation that strikes a surface. It is usually expressed in kilowatts AU129: Anchored Object 28 per square meter. Irradiance multiplied by time equals insolation AU130: Anchored Object 29 .
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Thermographic Survey for the Preservation and Restoration of Architectural Cultural Heritage
Irradiance is one of three ways in which the propagation of heat takes place. In particular, in contrast to conduction and convection, irradiation does not require a direct contact between the exchangers nor a medium to propagate. It is a phenomenon that affects every solid, liquid or aeriform aggregate, and it can take place even in a vacuum. This is justified by the fact that the transfer of heat by radiation comes in the form of electromagnetic waves.
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