Panneau solaireLe terme « panneau solaire » peut faire référence à plusieurs concepts liés à l'énergie solaire : capteur solaire photovoltaïque : aussi appelé panneau solaire photovoltaïque, convertit le rayonnement solaire en électricité par effet photovoltaïque ; capteur solaire thermique : aussi appelé panneaux solaire thermique, convertit le rayonnement solaire en chaleur et la transfère à un fluide caloporteur ; panneau photovoltaïque thermique : combinaison des deux précédents ; panneau solaire aérothermique : métho
Dielectric heatingDielectric heating, also known as electronic heating, radio frequency heating, and high-frequency heating, is the process in which a radio frequency (RF) alternating electric field, or radio wave or microwave electromagnetic radiation heats a dielectric material. At higher frequencies, this heating is caused by molecular dipole rotation within the dielectric. Molecular rotation occurs in materials containing polar molecules having an electrical dipole moment, with the consequence that they will align themselves in an electromagnetic field.
Faisceau hertzienvignette|Tour hertzienne du Gemeindealpe, Autriche. vignette|Relais hertzien. Un faisceau hertzien est un système de transmission de signaux mono-directionnel ou bi-directionnel et généralement permanent, entre deux sites géographiques fixes. Il exploite le support d'ondes radioélectriques, par des fréquences porteuses allant de (gamme des micro-ondes), focalisées et concentrées grâce à des antennes directives.
Transparence (physique)La transparence désigne la capacité d'un matériau à ne pas interagir avec une onde. Dans le cas de l'optique, un matériau transparent a pour propriété de ne pas absorber la lumière. Cette propriété du matériau dépend cependant de la longueur d'onde. Translucidité L'appellation translucide est spécifiquement employée pour les ondes lumineuses du domaine visible. Les matériaux translucides ont la propriété de diffuser la lumière lors de sa transmission, ce qui rend l'observation au travers difficile ou impossible.
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%.
Quantum dot solar cellA quantum dot solar cell (QDSC) is a solar cell design that uses quantum dots as the captivating photovoltaic material. It attempts to replace bulk materials such as silicon, copper indium gallium selenide (CIGS) or cadmium telluride (CdTe). Quantum dots have bandgaps that are adjustable across a wide range of energy levels by changing their size. In bulk materials, the bandgap is fixed by the choice of material(s).
Theory of solar cellsThe theory of solar cells explains the process by which light energy in photons is converted into electric current when the photons strike a suitable semiconductor device. The theoretical studies are of practical use because they predict the fundamental limits of a solar cell, and give guidance on the phenomena that contribute to losses and solar cell efficiency. Photons in sunlight hit the solar panel and are absorbed by semi-conducting materials. Electrons (negatively charged) are knocked loose from their atoms as they are excited.
Crystalline siliconCrystalline silicon or (c-Si) Is the crystalline forms of silicon, either polycrystalline silicon (poly-Si, consisting of small crystals), or monocrystalline silicon (mono-Si, a continuous crystal). Crystalline silicon is the dominant semiconducting material used in photovoltaic technology for the production of solar cells. These cells are assembled into solar panels as part of a photovoltaic system to generate solar power from sunlight. In electronics, crystalline silicon is typically the monocrystalline form of silicon, and is used for producing microchips.
Transparent conducting filmTransparent conducting films (TCFs) are thin films of optically transparent and electrically conductive material. They are an important component in a number of electronic devices including liquid-crystal displays, OLEDs, touchscreens and photovoltaics. While indium tin oxide (ITO) is the most widely used, alternatives include wider-spectrum transparent conductive oxides (TCOs), conductive polymers, metal grids and random metallic networks, carbon nanotubes (CNT), graphene, nanowire meshes and ultra thin metal films.
Reflective array antennaIn telecommunications and radar, a reflective array antenna is a class of directive antennas in which multiple driven elements are mounted in front of a flat surface designed to reflect the radio waves in a desired direction. They are a type of array antenna. They are often used in the VHF and UHF frequency bands. VHF examples are generally large and resemble a highway billboard, so they are sometimes called billboard antennas. Other names are bedspring array and bowtie array depending on the type of elements making up the antenna.