Aller au contenu

Browse A-Z

Alphabetical public term index for this language.

/
2,337 source-backed termsdatabase

Brouillon de traduction automatique (French) for "Latency Ingress Rule": Latency Ingress Rule is a networking boundary rule that controls how external traffic enters a service for time between request and response. It uses hostnames, paths, protocols, and policy checks so teams can keep entry points predictable while keeping evidence, reliability, and public-safe operational boundaries clear.

Exemple en brouillon: The network engineering team used Latency Ingress Rule when a user saw slow responses, so the team could keep entry points predictable before traffic crossed a service boundary.

Le journal de latence est un flux d'événements enregistré utilisé pour observer la latence à travers l'infrastructure PlatPhorm News. Il aide les opérateurs à vérifier que les listes d'articles, les flux, les routes API et les services de graphique réseau sont disponibles, frais et sains.

Le Latence Metric est une valeur opérationnelle mesurée utilisée pour observer la latence dans l'infrastructure de PlatPhorm News. Il aide les opérateurs à vérifier que les listes d'articles, les flux, les routes API et les services de graphique réseau sont disponibles, frais et sains.

Brouillon de traduction automatique (French) for "Latency Packet Capture": Latency Packet Capture is a networking diagnostic artifact that records network packets for analysis for time between request and response. It uses bounded capture windows, filters, and redaction so teams can investigate protocol behavior safely while keeping evidence, reliability, and public-safe operational boundaries clear.

Exemple en brouillon: The network engineering team used Latency Packet Capture when a user saw slow responses, so the team could investigate protocol behavior safely before traffic crossed a service boundary.

Brouillon de traduction automatique (French) for "Latency Path Trace": Latency Path Trace is a networking diagnostic record that shows where traffic travels and where delay or loss appears for time between request and response. It uses hop data, timing, and network metadata so teams can debug connectivity issues while keeping evidence, reliability, and public-safe operational boundaries clear.

Exemple en brouillon: The network engineering team used Latency Path Trace when a user saw slow responses, so the team could debug connectivity issues before traffic crossed a service boundary.

La sonde de latence est un contrôle de santé automatisé utilisé pour observer la latence à travers l'infrastructure PlatPhorm News. Il aide les opérateurs à vérifier que les listes d'articles, les flux, les routes API et les services de graphique réseau sont disponibles, frais et sains.

Brouillon de traduction automatique (French) for "Latency Resolver Cache": Latency Resolver Cache is a networking performance layer that stores DNS answers for reuse until they expire for time between request and response. It uses TTL rules, cache keys, and invalidation so teams can reduce lookup latency while keeping evidence, reliability, and public-safe operational boundaries clear.

Exemple en brouillon: The network engineering team used Latency Resolver Cache when a user saw slow responses, so the team could reduce lookup latency before traffic crossed a service boundary.

Brouillon de traduction automatique (French) for "Latency Route Leak Guard": Latency Route Leak Guard is a networking routing control that detects and blocks accidental route propagation for time between request and response. It uses prefix filters, validation, and peer policy so teams can protect reachability while keeping evidence, reliability, and public-safe operational boundaries clear.

Exemple en brouillon: The network engineering team used Latency Route Leak Guard when a user saw slow responses, so the team could protect reachability before traffic crossed a service boundary.

Brouillon de traduction automatique (French) for "Latency Traffic Shaper": Latency Traffic Shaper is a networking control mechanism that limits or prioritizes flows across links for time between request and response. It uses queues, rate limits, and quality-of-service rules so teams can protect important traffic while keeping evidence, reliability, and public-safe operational boundaries clear.

Exemple en brouillon: The network engineering team used Latency Traffic Shaper when a user saw slow responses, so the team could protect important traffic before traffic crossed a service boundary.

Les opérations latentes sont des modifications, des traversées ou des mesures effectuées sur des vecteurs dans un espace latent du modèle. Les opérations courantes comprennent le déplacement d'un vecteur le long d'une direction apprise, l'interpolation entre deux vecteurs, la soustraction d'un vecteur conceptuel d'un autre, la masquage de dimensions ou l'échantillonnage de points voisins. Ces opérations sont utilisées pour explorer comment un modèle organise les concepts et pour guider la génération sans réécrire le modèle entier.

Le raisonnement latent est l'idée qu'un modèle de langage peut porter une partie de son processus de raisonnement à l'intérieur de vecteurs d'états cachés continus au lieu de seulement par des mots explicites. Dans un LLM, l'invite est projetée en représentations haute dimension, transformée par des couches de modèles, et décodée en texte. La recherche sur le raisonnement latent traite un état caché modèle comme une représentation réutilisable d'une pensée intermédiaire, permettant ainsi au raisonnement de continuer directement dans l'espace latent.

La chirurgie spatiale latente est une technique d'édition de modèles qui identifie des directions dans un espace latent correspondant à des concepts, styles ou comportements, puis ajoute, soustrait ou amortit ces directions pour changer des sorties ou des représentations internes. Au lieu de recycler un modèle entier, les praticiens peuvent utiliser des modifications vectorielles ciblées pour rafraîchir le comportement, comme déplacer une musique intégrant d'une direction classique vers une direction jazz.

Brouillon de traduction automatique (French) for "Launch Attitude Control": Launch Attitude Control is a space subsystem that keeps a spacecraft pointed correctly for power, thermal safety, communication, or science for launch vehicle and ascent operations. It uses sensors, reaction wheels, thrusters, and control laws so teams can maintain pointing without exceeding constraints while keeping evidence, reliability, and public-safe operational boundaries clear.

Exemple en brouillon: The mission team used Launch Attitude Control when the launch window narrowed, so the team could maintain pointing without exceeding constraints before the next mission decision point.

Brouillon de traduction automatique (French) for "Launch Autonomy Stack": Launch Autonomy Stack is a space software layer that lets spacecraft or ground tools make bounded decisions when direct human control is delayed for launch vehicle and ascent operations. It uses rules, state machines, onboard checks, and fail-safe limits so teams can handle latency without losing accountability while keeping evidence, reliability, and public-safe operational boundaries clear.

Exemple en brouillon: The mission team used Launch Autonomy Stack when the launch window narrowed, so the team could handle latency without losing accountability before the next mission decision point.

Brouillon de traduction automatique (French) for "Launch Command Sequence": Launch Command Sequence is a space operations artifact that orders spacecraft actions into a validated timeline for launch vehicle and ascent operations. It uses syntax checks, dependency rules, and simulation so teams can send instructions without hidden conflicts while keeping evidence, reliability, and public-safe operational boundaries clear.

Exemple en brouillon: The mission team used Launch Command Sequence when the launch window narrowed, so the team could send instructions without hidden conflicts before the next mission decision point.

Brouillon de traduction automatique (French) for "Launch Debris Avoidance": Launch Debris Avoidance is a space safety workflow that reduces collision risk with tracked objects and mission-generated debris for launch vehicle and ascent operations. It uses conjunction screening, maneuver planning, and operator signoff so teams can avoid unsafe passes without overusing fuel while keeping evidence, reliability, and public-safe operational boundaries clear.

Exemple en brouillon: The mission team used Launch Debris Avoidance when the launch window narrowed, so the team could avoid unsafe passes without overusing fuel before the next mission decision point.

Brouillon de traduction automatique (French) for "Launch Ephemeris Service": Launch Ephemeris Service is a space data service that publishes precise position and velocity data for mission planning for launch vehicle and ascent operations. It uses orbit determination, time standards, and versioned trajectory products so teams can align navigation, communications, and safety analysis while keeping evidence, reliability, and public-safe operational boundaries clear.

Exemple en brouillon: The mission team used Launch Ephemeris Service when the launch window narrowed, so the team could align navigation, communications, and safety analysis before the next mission decision point.

Brouillon de traduction automatique (French) for "Launch Fault Detection": Launch Fault Detection is a space control that finds off-nominal behavior before it becomes a mission-impacting failure for launch vehicle and ascent operations. It uses telemetry thresholds, trend checks, and operator review so teams can choose a safe response while keeping evidence, reliability, and public-safe operational boundaries clear.

Exemple en brouillon: The mission team used Launch Fault Detection when the launch window narrowed, so the team could choose a safe response before the next mission decision point.

Brouillon de traduction automatique (French) for "Launch Link Budget": Launch Link Budget is a space planning model that estimates whether a signal path has enough margin for reliable communication for launch vehicle and ascent operations. It uses antenna gain, path loss, modulation, and noise estimates so teams can schedule contacts with realistic margins while keeping evidence, reliability, and public-safe operational boundaries clear.

Exemple en brouillon: The mission team used Launch Link Budget when the launch window narrowed, so the team could schedule contacts with realistic margins before the next mission decision point.

Brouillon de traduction automatique (French) for "Launch Radiation Shielding": Launch Radiation Shielding is a space design control that reduces exposure from charged particles and solar events for launch vehicle and ascent operations. It uses material selection, safe modes, and exposure modeling so teams can protect electronics and crews from known hazards while keeping evidence, reliability, and public-safe operational boundaries clear.

Exemple en brouillon: The mission team used Launch Radiation Shielding when the launch window narrowed, so the team could protect electronics and crews from known hazards before the next mission decision point.