Error correction codeIn computing, telecommunication, information theory, and coding theory, forward error correction (FEC) or channel coding is a technique used for controlling errors in data transmission over unreliable or noisy communication channels. The central idea is that the sender encodes the message in a redundant way, most often by using an error correction code or error correcting code (ECC). The redundancy allows the receiver not only to detect errors that may occur anywhere in the message, but often to correct a limited number of errors.
Code d'effacementEn théorie de l'information, un code d'effacement est un code de correction d'erreur directe pour le canal binaire d'effacement qui transforme un message composé de symboles en un message plus long composé de symboles tel que le message original peut être retrouvé à partir d'un sous-ensemble de ces symboles. La fraction est appelé « débit du code ». La fraction , où représente le nombre de symboles requis pour restaurer le message est appelée efficacité de la réception.
Tornado codeIn coding theory, Tornado codes are a class of erasure codes that support error correction. Tornado codes require a constant C more redundant blocks than the more data-efficient Reed–Solomon erasure codes, but are much faster to generate and can fix erasures faster. Software-based implementations of tornado codes are about 100 times faster on small lengths and about 10,000 times faster on larger lengths than Reed–Solomon erasure codes. Since the introduction of Tornado codes, many other similar erasure codes have emerged, most notably Online codes, LT codes and Raptor codes.
Code correcteurvignette|Pour nettoyer les erreurs de transmission introduites par l'atmosphère terrestre (à gauche), les scientifiques de Goddard ont appliqué la correction d'erreur Reed-Solomon (à droite), qui est couramment utilisée dans les CD et DVD. Les erreurs typiques incluent les pixels manquants (blanc) et les faux signaux (noir). La bande blanche indique une brève période pendant laquelle la transmission a été interrompue.
Binary erasure channelIn coding theory and information theory, a binary erasure channel (BEC) is a communications channel model. A transmitter sends a bit (a zero or a one), and the receiver either receives the bit correctly, or with some probability receives a message that the bit was not received ("erased") . A binary erasure channel with erasure probability is a channel with binary input, ternary output, and probability of erasure . That is, let be the transmitted random variable with alphabet .
Systematic codeIn coding theory, a systematic code is any error-correcting code in which the input data is embedded in the encoded output. Conversely, in a non-systematic code the output does not contain the input symbols. Systematic codes have the advantage that the parity data can simply be appended to the source block, and receivers do not need to recover the original source symbols if received correctly – this is useful for example if error-correction coding is combined with a hash function for quickly determining the correctness of the received source symbols, or in cases where errors occur in erasures and a received symbol is thus always correct.
Concatenated error correction codeIn coding theory, concatenated codes form a class of error-correcting codes that are derived by combining an inner code and an outer code. They were conceived in 1966 by Dave Forney as a solution to the problem of finding a code that has both exponentially decreasing error probability with increasing block length and polynomial-time decoding complexity. Concatenated codes became widely used in space communications in the 1970s.
Théorie des codesEn théorie de l'information, la théorie des codes traite des codes et de leurs propriétés et de leurs aptitudes à servir sur différents canaux de communication. On distingue deux modèles de communication : avec et sans bruit. Sans bruit, le codage de source suffit à la communication. Avec bruit, la communication est possible avec les codes correcteurs. En définissant l'information de façon mathématique, l'étape fondatrice de la théorie des codes a été franchie par Claude Shannon.
Canal de communication (théorie de l'information)vignette En théorie de l'information, un canal de communication ou canal de transmission est un support (physique ou non) permettant la transmission d'une certaine quantité d'information, depuis une source (ou émetteur) vers un destinataire (ou récepteur). Souvent, le canal altère l'information transmise, par exemple en ajoutant un bruit aléatoire. La quantité d'information qu'un canal de communication peut transporter est limitée : on parle de capacité du canal.
Linear network codingIn computer networking, linear network coding is a program in which intermediate nodes transmit data from source nodes to sink nodes by means of linear combinations. Linear network coding may be used to improve a network's throughput, efficiency, and scalability, as well as reducing attacks and eavesdropping. The nodes of a network take several packets and combine for transmission. This process may be used to attain the maximum possible information flow in a network.