Gestionnaire de réseau de transportDans l'Union européenne, un gestionnaire de réseau de transport (GRT) est une entreprise chargée de la gestion de tout ou partie d'un réseau de transport d'énergie (électricité ou gaz). Le réseau de transport est complété par le réseau de distribution, auquel sont reliés la plupart des consommateurs ; seuls quelques gros consommateurs (dits « électro-intensifs » ou plus rarement « gaz-intensifs ») sont directement connectés au réseau de transport.
Câble coaxialLe câble coaxial ou ligne coaxiale désigne une ligne de transmission ou liaison asymétrique, utilisée en basses ou hautes fréquences, composée d'un câble à deux conducteurs (central et extérieur), dont le conducteur externe assure le plus souvent le blindage. L'invention en est attribuée à Oliver Heaviside (breveté en 1880). L'Américain Herman Affel a développé le câble coaxial moderne, dont le brevet a été accepté en 1931. En réception de signaux de télévision, le câble coaxial est le plus souvent associé à la prise d'antenne ou à la fiche F.
Onde longitudinaleLongitudinal waves are waves in which the vibration of the medium is parallel to the direction the wave travels and displacement of the medium is in the same (or opposite) direction of the wave propagation. Mechanical longitudinal waves are also called compressional or compression waves, because they produce compression and rarefaction when traveling through a medium, and pressure waves, because they produce increases and decreases in pressure.
S waveNOTOC In seismology and other areas involving elastic waves, S waves, secondary waves, or shear waves (sometimes called elastic S waves) are a type of elastic wave and are one of the two main types of elastic body waves, so named because they move through the body of an object, unlike surface waves. S waves are transverse waves, meaning that the direction of particle movement of a S wave is perpendicular to the direction of wave propagation, and the main restoring force comes from shear stress.
Input impedanceThe input impedance of an electrical network is the measure of the opposition to current (impedance), both static (resistance) and dynamic (reactance), into a load network that is external to the electrical source network. The input admittance (the reciprocal of impedance) is a measure of the load network's propensity to draw current. The source network is the portion of the network that transmits power, and the load network is the portion of the network that consumes power.
Impedance bridgingIn audio engineering and sound recording, a high impedance bridging, voltage bridging, or simply bridging connection is one in which the load impedance is much larger than the source impedance. The load measures the source's voltage while minimally drawing current or affecting it. When the output of a device (consisting of the voltage source VS and output impedance ZS in illustration) is connected to the input of another device (the load impedance ZL in the illustration), these two impedances form a voltage divider: One can maximize the signal level VL by using a voltage source whose output impedance ZS is as small as possible and by using a receiving device whose input impedance ZL is as large as possible.
Velocity factorThe velocity factor (VF), also called wave propagation speed or velocity of propagation (VoP or of a transmission medium is the ratio of the speed at which a wavefront (of an electromagnetic signal, a radio signal, a light pulse in an optical fibre or a change of the electrical voltage on a copper wire) passes through the medium, to the speed of light in vacuum. For optical signals, the velocity factor is the reciprocal of the refractive index.
Output impedanceThe output impedance of an electrical network is the measure of the opposition to current flow (impedance), both static (resistance) and dynamic (reactance), into the load network being connected that is internal to the electrical source. The output impedance is a measure of the source's propensity to drop in voltage when the load draws current, the source network being the portion of the network that transmits and the load network being the portion of the network that consumes.
Planar transmission linePlanar transmission lines are transmission lines with conductors, or in some cases dielectric (insulating) strips, that are flat, ribbon-shaped lines. They are used to interconnect components on printed circuits and integrated circuits working at microwave frequencies because the planar type fits in well with the manufacturing methods for these components. Transmission lines are more than simply interconnections.
Impédance (électricité)L'impédance électrique mesure l'opposition d'un circuit électrique au passage d'un courant alternatif sinusoïdal. La définition de l'impédance est une généralisation de la loi d'Ohm au courant alternatif. On passe de à , mais avec et de formes sinusoïdales. Le mot impédance fut inventé par Oliver Heaviside en . Il vient du verbe anglais en signifiant « retenir », « faire obstacle à » ; verbe qui dérive lui-même du latin impedire qui veut dire « entraver ».
Antenna feedA radio transmitter or receiver is connected to an antenna which emits or receives the radio waves. The antenna feed system or antenna feed is the cable or conductor, and other associated equipment, which connects the transmitter or receiver with the antenna and makes the two devices compatible. In a radio transmitter, the transmitter generates an alternating current of radio frequency, and the feed system feeds the current to the antenna, which converts the power in the current to radio waves.
Waveguide filterA waveguide filter is an electronic filter constructed with waveguide technology. Waveguides are hollow metal conduits inside which an electromagnetic wave may be transmitted. Filters are devices used to allow signals at some frequencies to pass (the passband), while others are rejected (the stopband). Filters are a basic component of electronic engineering designs and have numerous applications. These include selection of signals and limitation of noise.