Maximum power point trackerUn Maximum Power Point Tracking (abrégé MPPT, litt. suivi du point maximal de puissance - SPMP), régulateur MPP ou un tracker MPP est un principe permettant de suivre, comme son nom l'indique, le point de puissance maximale d'un générateur électrique non linéaire. Les systèmes MPPT sont généralement associés avec les générateurs photovoltaïques ou encore avec les générateurs éoliens. Afin de simplifier la compréhension, l'explication qui suit est appliquée à un système de panneaux photovoltaïques.
Loi de Hall-PetchIn materials science, grain-boundary strengthening (or Hall–Petch strengthening) is a method of strengthening materials by changing their average crystallite (grain) size. It is based on the observation that grain boundaries are insurmountable borders for dislocations and that the number of dislocations within a grain has an effect on how stress builds up in the adjacent grain, which will eventually activate dislocation sources and thus enabling deformation in the neighbouring grain as well.
Dopage (semi-conducteur)Dans le domaine des semi-conducteurs, le dopage est l'action d'ajouter des impuretés en petites quantités à une substance pure afin de modifier ses propriétés de conductivité. Les propriétés des semi-conducteurs sont en grande partie régies par la quantité de porteurs de charge qu'ils contiennent. Ces porteurs sont les électrons ou les trous. Le dopage d'un matériau consiste à introduire, dans sa matrice, des atomes d'un autre matériau. Ces atomes vont se substituer à certains atomes initiaux et ainsi introduire davantage d'électrons ou de trous.
Rendement (physique)En physique, le rendement est défini comme une grandeur sans dimension qui caractérise l'efficacité d'une transformation, physique ou chimique. En physique, la grandeur caractérise généralement la conversion d'une forme d'énergie en une autre. Pour un système réalisant une conversion d'énergie (transformateur, moteur, pompe à chaleur), le rendement est défini par certains auteurs comme étant le rapport entre l'énergie recueillie en sortie et l'énergie fournie en entrée, qui confond alors les termes d'efficacité thermodynamique et de rendement thermodynamique.
Electrical resistance and conductanceThe electrical resistance of an object is a measure of its opposition to the flow of electric current. Its reciprocal quantity is , measuring the ease with which an electric current passes. Electrical resistance shares some conceptual parallels with mechanical friction. The SI unit of electrical resistance is the ohm (Ω), while electrical conductance is measured in siemens (S) (formerly called the 'mho' and then represented by ℧). The resistance of an object depends in large part on the material it is made of.
MonocristalUn monocristal ou matériau monocristallin est un matériau solide constitué d'un unique cristal, formé à partir d’un seul germe. À l'opposé, un polycristal ou matériau polycristallin, est constitué lui d'une multitude de petits cristaux de taille et d'orientation variées. De façon exceptionnelle, on peut en trouver dans la nature, pour le béryl, le quartz, le gypse ; ainsi pour ce dernier la mine de Naica (Mexique) comporte des monocristaux de gypse atteignant treize mètres.
Electrical efficiencyThe efficiency of a system in electronics and electrical engineering is defined as useful power output divided by the total electrical power consumed (a fractional expression), typically denoted by the Greek small letter eta (η – ήτα). If energy output and input are expressed in the same units, efficiency is a dimensionless number. Where it is not customary or convenient to represent input and output energy in the same units, efficiency-like quantities have units associated with them.
Fuel efficiencyFuel efficiency is a form of thermal efficiency, meaning the ratio of effort to result of a process that converts chemical potential energy contained in a carrier (fuel) into kinetic energy or work. Overall fuel efficiency may vary per device, which in turn may vary per application, and this spectrum of variance is often illustrated as a continuous . Non-transportation applications, such as industry, benefit from increased fuel efficiency, especially fossil fuel power plants or industries dealing with combustion, such as ammonia production during the Haber process.
Energy transformationEnergy transformation, also known as energy conversion, is the process of changing energy from one form to another. In physics, energy is a quantity that provides the capacity to perform work or moving (e.g. lifting an object) or provides heat. In addition to being converted, according to the law of conservation of energy, energy is transferable to a different location or object, but it cannot be created or destroyed.
DopantA dopant (also called a doping agent) is a trace of impurity element that is introduced into a chemical material to alter its original electrical or optical properties. The amount of dopant necessary to cause changes is typically very low. When doped into crystalline substances, the dopant's atoms get incorporated into its crystal lattice. The crystalline materials are frequently either crystals of a semiconductor such as silicon and germanium for use in solid-state electronics, or transparent crystals for use in the production of various laser types; however, in some cases of the latter, noncrystalline substances such as glass can also be doped with impurities.