Photovoltaic system performancePhotovoltaic system performance is a function of the climatic conditions, the equipment used and the system configuration. PV performance can be measured as the ratio of actual solar PV system output vs expected values, the measurement being essential for proper solar PV facility's operation and maintenance. The primary energy input is the global light irradiance in the plane of the solar arrays, and this in turn is a combination of the direct and the diffuse radiation.
Panneau photovoltaïque à concentrationUn panneau photovoltaïque à concentration, parfois simplement dénommé « panneau à concentration » est un module solaire photovoltaïque composé d'une série de dispositifs optiques de concentration de la lumière (lentilles ou miroirs) sur des cellules photovoltaïques (qui doivent être refroidies si le taux de concentration est élevé). Le composant le plus cher d'un module est - de loin - la cellule photovoltaïque.
Installation photovoltaïque intégrée au bâtithumb|Habitations avec des panneaux solaires intégrés au bâti à Fribourg-en-Brisgau. Les installations photovoltaïques intégrées au bâti sont des installations photovoltaïques se substituant aux éléments de construction traditionnels des maisons et immeubles. La filière est souvent désignée par son acronyme anglais BIPV (). L’intégration du photovoltaïque au bâti apparait dans les années 1980 aux États-Unis, ces systèmes installés sur des bâtiments connectés au réseau ne sont pas montés en surimposition mais intégrés esthétiquement car le photovoltaïque arrive en ville et ne se limite plus au site isolé.
Timeline of solar cellsIn the 19th century, it was observed that the sunlight striking certain materials generates detectable electric current – the photoelectric effect. This discovery laid the foundation for solar cells. Solar cells have gone on to be used in many applications. They have historically been used in situations where electrical power from the grid was unavailable. As the invention was brought out it made solar cells as a prominent utilization for power generation for satellites.
Multi-junction solar cellMulti-junction (MJ) solar cells are solar cells with multiple p–n junctions made of different semiconductor materials. Each material's p-n junction will produce electric current in response to different wavelengths of light. The use of multiple semiconducting materials allows the absorbance of a broader range of wavelengths, improving the cell's sunlight to electrical energy conversion efficiency. Traditional single-junction cells have a maximum theoretical efficiency of 33.16%.
Nanocrystal solar cellNanocrystal solar cells are solar cells based on a substrate with a coating of nanocrystals. The nanocrystals are typically based on silicon, CdTe or CIGS and the substrates are generally silicon or various organic conductors. Quantum dot solar cells are a variant of this approach which take advantage of quantum mechanical effects to extract further performance. Dye-sensitized solar cells are another related approach, but in this case the nano-structuring is a part of the substrate.
Carrier generation and recombinationIn the solid-state physics of semiconductors, carrier generation and carrier recombination are processes by which mobile charge carriers (electrons and electron holes) are created and eliminated. Carrier generation and recombination processes are fundamental to the operation of many optoelectronic semiconductor devices, such as photodiodes, light-emitting diodes and laser diodes. They are also critical to a full analysis of p-n junction devices such as bipolar junction transistors and p-n junction diodes.
Third-generation photovoltaic cellThird-generation photovoltaic cells are solar cells that are potentially able to overcome the Shockley–Queisser limit of 31–41% power efficiency for single bandgap solar cells. This includes a range of alternatives to cells made of semiconducting p-n junctions ("first generation") and thin film cells ("second generation"). Common third-generation systems include multi-layer ("tandem") cells made of amorphous silicon or gallium arsenide, while more theoretical developments include frequency conversion, (i.e.
Cadmium telluride photovoltaicsCadmium telluride (CdTe) photovoltaics is a photovoltaic (PV) technology based on the use of cadmium telluride in a thin semiconductor layer designed to absorb and convert sunlight into electricity. Cadmium telluride PV is the only thin film technology with lower costs than conventional solar cells made of crystalline silicon in multi-kilowatt systems. On a lifecycle basis, CdTe PV has the smallest carbon footprint, lowest water use and shortest energy payback time of any current photovoltaic technology.
Panneau photovoltaïque thermiqueUn panneau photovoltaïque thermique (PV-T), ou panneau solaire hybride, ou encore panneau aérovoltaïque est un dispositif conçu à la fois pour produire de l'électricité photovoltaïque et pour recueillir l'énergie thermique provenant du Soleil.