neural controller - перевод на Английский
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neural controller - перевод на Английский

CONTROLLER FOR DISK STORAGE, USUALLY INTEGRATED INTO THE DRIVE
Hard disk controller; Hard drive controller; HD controller; Drive controller
  • RLL]] hard disk controller produced in 1990.
Найдено результатов: 355
neural controller      

общая лексика

нейроконтроллер

контроллер, в архитектуре которого используются нейронные сети

Смотрите также

controller; FLC; neural computer; neural network

neural crest         
  • Migration of neural crest cells during development. Grey arrows indicate the direction of the paths crest cells migrate. (R=Rostral, C=Caudal)
  • Delamination of neural crest cells during development. Downregulation of CAMs and tight junction proteins is followed by secretion of MMPs and subsequent delamination.
EMBYRONIC GROUP OF CELLS GIVING RISE TO DIVERSE CELL LINEAGES
Neural Crest; Ganglion ridge; Neural crest cell; Neural crest cells; Neural-crest; Neural Crest Cells; Neural crest cell migration; Neural crests

общая лексика

нервный валик

ганглионарная пластинка

disk controller         

общая лексика

дисковый контроллер, контроллер диска

плата расширения и/или микросхема, обеспечивающая взаимодействие процессора с дисковым накопителем

neural net         
  • Neuron and myelinated axon, with signal flow from inputs at dendrites to outputs at axon terminals
  • Confidence analysis of a neural network
COMPUTATIONAL MODEL USED IN MACHINE LEARNING, BASED ON CONNECTED, HIERARCHICAL FUNCTIONS
Neural net; Neural nets; Massive neural network; Neuralnets; Neuralnet; Artificial neural networs; Artificial neural networks; Artificial Neural Networks; Distributed representation; Nervous network; Nueral Network; Simulated neural network; Artificial Neural Network; Simulated Neural Network; Neural Network; Stochastic neural network; Present challenges in neural Networks; Problems in the verge of success in neural network research; Nervous Network; Bayesian neural network; Nueral networks; Neural network processor; Neural network processors; Neural computing; Neural circuitry; Neural Nets; Neural networks in robotics; Artificial neural net; Fuzzy neural networks; Neural network (computer); Neural network models; Neural network model; Models of neural network; Models of neural networks; Neural networks (computer); Aritificial Neuron Network; Computational network; History of Neural Networks; Convergent recursive learning algorithm; Deep stacking network; Tensor deep stacking network; Deep predictive coding networks; Applications of artificial neural networks; Neural network (artificial); Algorithms for training neural networks; Parameter (machine learning); Criticism of artificial neural networks; Self-learning in artificial neural network

математика

нервная (нейронная) сеть

artificial neural network         
  • Neuron and myelinated axon, with signal flow from inputs at dendrites to outputs at axon terminals
  • Confidence analysis of a neural network
COMPUTATIONAL MODEL USED IN MACHINE LEARNING, BASED ON CONNECTED, HIERARCHICAL FUNCTIONS
Neural net; Neural nets; Massive neural network; Neuralnets; Neuralnet; Artificial neural networs; Artificial neural networks; Artificial Neural Networks; Distributed representation; Nervous network; Nueral Network; Simulated neural network; Artificial Neural Network; Simulated Neural Network; Neural Network; Stochastic neural network; Present challenges in neural Networks; Problems in the verge of success in neural network research; Nervous Network; Bayesian neural network; Nueral networks; Neural network processor; Neural network processors; Neural computing; Neural circuitry; Neural Nets; Neural networks in robotics; Artificial neural net; Fuzzy neural networks; Neural network (computer); Neural network models; Neural network model; Models of neural network; Models of neural networks; Neural networks (computer); Aritificial Neuron Network; Computational network; History of Neural Networks; Convergent recursive learning algorithm; Deep stacking network; Tensor deep stacking network; Deep predictive coding networks; Applications of artificial neural networks; Neural network (artificial); Algorithms for training neural networks; Parameter (machine learning); Criticism of artificial neural networks; Self-learning in artificial neural network

общая лексика

искусственная нейронная сеть, ИНС

программа или аппаратура, моделирующие сеть, построенную на принципах взаимодействия клеток (нейронов) нервной системы человека. В аппаратной реализации ИНС представляет собой сеть из множества простых процессоров (units), каждый из которых имеет небольшую локальную память и коммуникационные соединения с другими процессорами (connections). По входным соединениям передаются числовые данные, а по выходным - результаты их обработки. Такие сети используются для распознавания образов, речи, прогнозирования ситуации в финансовой сфере и т.д.

синоним

ANN; neural network

Смотрите также

AI; artificial life; computer vision; speech recognition; speech synthesis; training

neural nets         
  • Neuron and myelinated axon, with signal flow from inputs at dendrites to outputs at axon terminals
  • Confidence analysis of a neural network
COMPUTATIONAL MODEL USED IN MACHINE LEARNING, BASED ON CONNECTED, HIERARCHICAL FUNCTIONS
Neural net; Neural nets; Massive neural network; Neuralnets; Neuralnet; Artificial neural networs; Artificial neural networks; Artificial Neural Networks; Distributed representation; Nervous network; Nueral Network; Simulated neural network; Artificial Neural Network; Simulated Neural Network; Neural Network; Stochastic neural network; Present challenges in neural Networks; Problems in the verge of success in neural network research; Nervous Network; Bayesian neural network; Nueral networks; Neural network processor; Neural network processors; Neural computing; Neural circuitry; Neural Nets; Neural networks in robotics; Artificial neural net; Fuzzy neural networks; Neural network (computer); Neural network models; Neural network model; Models of neural network; Models of neural networks; Neural networks (computer); Aritificial Neuron Network; Computational network; History of Neural Networks; Convergent recursive learning algorithm; Deep stacking network; Tensor deep stacking network; Deep predictive coding networks; Applications of artificial neural networks; Neural network (artificial); Algorithms for training neural networks; Parameter (machine learning); Criticism of artificial neural networks; Self-learning in artificial neural network

Смотрите также

neural network

PID controller         
  • Showing the evolution of analog control loop signaling from the pneumatic to the electronic eras
  • Response of PV to step change of SP vs time, for three values of ''K''<sub>d</sub> (''K''<sub>p</sub> and ''K''<sub>i</sub> held constant)
  • Response of PV to step change of SP vs time, for three values of ''K''<sub>i</sub> (''K''<sub>p</sub> and ''K''<sub>d</sub> held constant)
  • Proportional control using nozzle and flapper high gain amplifier and negative feedback
  • Effects of varying PID parameters (K<sub>p</sub>,K<sub>i</sub>,K<sub>d</sub>) on the step response of a system
  • A [[block diagram]] of a PID controller in a feedback loop. ''r''(''t'') is the desired process value or setpoint (SP), and ''y''(''t'') is the measured process value (PV).
  • PID with derivative filtering
  • PID without derivative filtering
  • Response of PV to step change of SP vs time, for three values of ''K''<sub>p</sub> (''K''<sub>i</sub> and ''K''<sub>d</sub> held constant)
  • Basic block of a PI controller
  • alt=
  • Early PID theory was developed by observing the actions of [[helmsmen]] in keeping a vessel on course in the face of varying influences such as wind and sea state.
  • Current loops used for sensing and control signals. A modern electronic "smart" valve positioner is shown, which will incorporate its own PID controller.
CONTROL LOOP MECHANISM USED IN CONTROL ENGINEERING
PID loop; Proportional-Integral-Derivative controller; PID tuning; PID algorithm; Proportional integral derivative; PI controller; PD controller; PID control; PI Controller; Pi controller; Pidc; PID Controller; Proportional–integral–derivative controller; P.I.D. control; Droop (control); Proportional-integral-derivative controller; PID feed back controller; PID feedback controller; Three term controller; Steady-state error
ПИД-регулятор, пропорционально-интегральный (изодромный) регулятор с предварением
three term controller         
  • Showing the evolution of analog control loop signaling from the pneumatic to the electronic eras
  • Response of PV to step change of SP vs time, for three values of ''K''<sub>d</sub> (''K''<sub>p</sub> and ''K''<sub>i</sub> held constant)
  • Response of PV to step change of SP vs time, for three values of ''K''<sub>i</sub> (''K''<sub>p</sub> and ''K''<sub>d</sub> held constant)
  • Proportional control using nozzle and flapper high gain amplifier and negative feedback
  • Effects of varying PID parameters (K<sub>p</sub>,K<sub>i</sub>,K<sub>d</sub>) on the step response of a system
  • A [[block diagram]] of a PID controller in a feedback loop. ''r''(''t'') is the desired process value or setpoint (SP), and ''y''(''t'') is the measured process value (PV).
  • PID with derivative filtering
  • PID without derivative filtering
  • Response of PV to step change of SP vs time, for three values of ''K''<sub>p</sub> (''K''<sub>i</sub> and ''K''<sub>d</sub> held constant)
  • Basic block of a PI controller
  • alt=
  • Early PID theory was developed by observing the actions of [[helmsmen]] in keeping a vessel on course in the face of varying influences such as wind and sea state.
  • Current loops used for sensing and control signals. A modern electronic "smart" valve positioner is shown, which will incorporate its own PID controller.
CONTROL LOOP MECHANISM USED IN CONTROL ENGINEERING
PID loop; Proportional-Integral-Derivative controller; PID tuning; PID algorithm; Proportional integral derivative; PI controller; PD controller; PID control; PI Controller; Pi controller; Pidc; PID Controller; Proportional–integral–derivative controller; P.I.D. control; Droop (control); Proportional-integral-derivative controller; PID feed back controller; PID feedback controller; Three term controller; Steady-state error

строительное дело

ПИД-регулятор, пропорционально-интегральный (изодромный) регулятор с предварением

neural fold         
  • A side view of an anencephalic fetus
  • date=2012-04-04}}</ref>
  • Cross section through the embryonic disc showing the fold.
STRUCTURE ARISING DURING EMBRYONIC DEVELOPMENT OF BIRDS AND MAMMALS
Medullary folds; Neural folds

эмбриология

нервный валик

three term controller         
  • Showing the evolution of analog control loop signaling from the pneumatic to the electronic eras
  • Response of PV to step change of SP vs time, for three values of ''K''<sub>d</sub> (''K''<sub>p</sub> and ''K''<sub>i</sub> held constant)
  • Response of PV to step change of SP vs time, for three values of ''K''<sub>i</sub> (''K''<sub>p</sub> and ''K''<sub>d</sub> held constant)
  • Proportional control using nozzle and flapper high gain amplifier and negative feedback
  • Effects of varying PID parameters (K<sub>p</sub>,K<sub>i</sub>,K<sub>d</sub>) on the step response of a system
  • A [[block diagram]] of a PID controller in a feedback loop. ''r''(''t'') is the desired process value or setpoint (SP), and ''y''(''t'') is the measured process value (PV).
  • PID with derivative filtering
  • PID without derivative filtering
  • Response of PV to step change of SP vs time, for three values of ''K''<sub>p</sub> (''K''<sub>i</sub> and ''K''<sub>d</sub> held constant)
  • Basic block of a PI controller
  • alt=
  • Early PID theory was developed by observing the actions of [[helmsmen]] in keeping a vessel on course in the face of varying influences such as wind and sea state.
  • Current loops used for sensing and control signals. A modern electronic "smart" valve positioner is shown, which will incorporate its own PID controller.
CONTROL LOOP MECHANISM USED IN CONTROL ENGINEERING
PID loop; Proportional-Integral-Derivative controller; PID tuning; PID algorithm; Proportional integral derivative; PI controller; PD controller; PID control; PI Controller; Pi controller; Pidc; PID Controller; Proportional–integral–derivative controller; P.I.D. control; Droop (control); Proportional-integral-derivative controller; PID feed back controller; PID feedback controller; Three term controller; Steady-state error
ПИД-регулятор, пропорционально-интегральный (изодромный) регулятор с предварением

Определение

disk controller
<hardware, storage> (Or "hard disk controller", HDC) The circuit which allows the CPU to communicate with a {hard disk}, floppy disk or other kind of disk drive. The most common disk controllers in use are IDE and SCSI controllers. Most home personal computers use IDE controllers. High end PCs, workstations and network {file servers} mostly have SCSI adaptors. (1998-03-16)

Википедия

Disk controller

The disk controller is the controller circuit which enables the CPU to communicate with a hard disk, floppy disk or other kind of disk drive. It also provides an interface between the disk drive and the bus connecting it to the rest of the system.

Early disk controllers were identified by their storage methods and data encoding. They were typically implemented on a separate controller card. Modified frequency modulation (MFM) controllers were the most common type in small computers, used for both floppy disk and hard disk drives. Run length limited (RLL) controllers used data compression to increase storage capacity by about 50%. Priam created a proprietary storage algorithm that could double the disk storage. Shugart Associates Systems Interface (SASI) was a predecessor to SCSI.

Modern disk controllers are integrated into the disk drive as peripheral controllers. For example, disks called "SCSI disks" have built-in SCSI controllers. In the past, before most SCSI controller functionality was implemented in a single chip, separate SCSI controllers interfaced disks to the SCSI bus.

These integrated peripheral controllers communicate with a host adapter in the host system over a standardized, high-level storage bus interface. The most common types of interfaces provided nowadays by host controllers are PATA (IDE) and Serial ATA for home use. High-end disks use Parallel SCSI, Fibre Channel or Serial Attached SCSI.

Disk controllers can also control the timing of access to flash memory which is not mechanical in nature (i.e. no physical disk).

Как переводится neural controller на Русский язык