finite-horizon model - перевод на русский
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finite-horizon model - перевод на русский

ADVANCED METHOD OF PROCESS CONTROL
Model Predictive Control; Receding horizon control; Robust Model Predictive Control
Найдено результатов: 1735
finite-horizon model      
модель с конечным интервалом (планирования)
OTH radar         
  • [[Duga radar]] array, near [[Chernobyl]]
  • Official coverage of the [[Jindalee Operational Radar Network]]
  • antenna]] ''(left)'' reaches a target beyond the horizon by refracting off the [[ionosphere]], and the echo signal from the target ''(right)'' returns to the receiving antenna by the same route.
  • OTH-B coverage from stations in Maine and Oregon
  • PLUTO II OTH Radio broadcasting from Cyprus on frequency 15300 AM, recorded on 16 August 2022
  • U.S. Navy Relocatable Over-the-Horizon Radar station
  • Coverage of the three U.S. Navy ROTHR stations in Texas, Virginia, and Puerto Rico
RADAR SYSTEM THAT CAN FIND TARGETS AT 100S–1000S OF KILOMETRES, BEYOND THE RADAR HORIZON
OTHR; Over-The-Horizon radar; OTH-B; OTH-B Radar; Over the horizon radar; OTH radar; Over-the-horizon; Skywave radar; OTH-SW; ROTHR; Relocatable Over-the-Horizon Radar; Tactical Multi-Mission Over the Horizon Radar

существительное

общая лексика

загоризонтная РЛС

синоним

Over The Horizon radar

accepting state         
  • TTL]] counter, a type of state machine
  • Fig. 5: Representation of an acceptor; this example shows one that determines whether a binary number has an even number of 0s, where ''S''<sub>1</sub> is an ''accepting state'' and ''S''<sub>2</sub> is a ''non accepting state''.
  • Fig. 3 Example of a simple finite-state machine
  • Fig. 6 Transducer FSM: Moore model example
  • Fig. 7 Transducer FSM: Mealy model example
  • Fig. 4: Acceptor FSM: parsing the string "nice".
  • Fig. 2 SDL state machine example
  • A turnstile
  • State diagram for a turnstile
  • Fig. 1 UML state chart example (a toaster oven)
MATHEMATICAL MODEL OF COMPUTATION; ABSTRACT MACHINE THAT CAN BE IN EXACTLY ONE OF A FINITE NUMBER OF STATES AT ANY GIVEN TIME
Finite state machines; Finite state automaton; Finite automaton; Finite state automata; Start state; Finite automata; Deterministic automata; State machine; SFSM; Finite State Machine; Finate state automata; Accept state; Accepting state; State Machine; State machines; Recognizer; Recognizers; Sequence detector; Sequence detectors; Finite state acceptor; Finite State Automaton; State transition function; Finite State Machines; Finite-state automata; Finite-state automaton; Finite state machine; Finite state grammar; Finite-state machines; Finite state-machine; Finite state language; Finite state; Finite Automata; Finite state recognizer; Finite-state recognizer; State-machine; Acceptor (finite-state machine); Optimization of finite state machines; Recogniser

математика

поглощающее состояние

offing         
  • mi}}.
  • Geometrical basis for calculating the distance to the horizon, tangent-secant theorem
  • A ship moving away, beyond the horizon
  • Geometrical distance to the horizon, Pythagorean theorem
  • Maximum zenith angle for elevated observer in homogeneous spherical atmosphere
  • A view across a 20-km-wide bay in the coast of Spain. Note the curvature of the Earth hiding the base of the buildings on the far shore.
  • Geometrical horizon distance
  • Three types of horizon
  • Typical desert horizon
  • Two points on the horizon are at the intersections of the lines extending the segments representing the edges of the building in the foreground. The horizon line coincides here with the line at the top of the doors and windows.
APPARENT LINE THAT SEPARATES EARTH FROM SKY
The horizon; Horizon distance; Offing; Offings; Horizen; Curvature of the horizon; Distance to the horizon; Horizon dip; Horizon zenith angle; Distance to horizon

['ɔfiŋ]

существительное

общая лексика

взморье

море

видимое от берега до горизонта

море, видимое с берега до горизонта

offing         
  • mi}}.
  • Geometrical basis for calculating the distance to the horizon, tangent-secant theorem
  • A ship moving away, beyond the horizon
  • Geometrical distance to the horizon, Pythagorean theorem
  • Maximum zenith angle for elevated observer in homogeneous spherical atmosphere
  • A view across a 20-km-wide bay in the coast of Spain. Note the curvature of the Earth hiding the base of the buildings on the far shore.
  • Geometrical horizon distance
  • Three types of horizon
  • Typical desert horizon
  • Two points on the horizon are at the intersections of the lines extending the segments representing the edges of the building in the foreground. The horizon line coincides here with the line at the top of the doors and windows.
APPARENT LINE THAT SEPARATES EARTH FROM SKY
The horizon; Horizon distance; Offing; Offings; Horizen; Curvature of the horizon; Distance to the horizon; Horizon dip; Horizon zenith angle; Distance to horizon
1) открытое море
2) вдали от берега
3) подход
4) взморье
finite element analysis         
  • A function in <math>H_0^1,</math> with zero values at the endpoints (blue), and a piecewise linear approximation (red)
  • (c) The computed solution, <math>u(x, y)=1-x^2-y^2.</math>
  • (b) The [[sparse matrix]] ''L'' of the discretized linear system
  • Solving the two-dimensional problem <math>u_{xx}+u_{yy}=-4</math> in the disk centered at the origin and radius 1, with zero boundary conditions.<br />(a) The triangulation.
  • url=https://ris.utwente.nl/ws/files/6153316/CMBBE2014-Hamid-Submitted.pdf}}</ref>
  • A piecewise linear function in two dimensions
  • alt=
  • alt=
NUMERICAL METHOD FOR SOLVING PHYSICAL OR ENGINEERING PROBLEMS
Finite element analysis; Finite Element Analysis; Finite elements; Finite element; Finite Element Method; Engineering treatment of the finite element method; Finite element solver; Finite element meshing; Finite element problem; Engineering treatment of the Finite Element Method; Finite element methods; Finite difference method based on variation principle; Finite elements analysis; Finite-element method; Finite-element analysis; Finite-element methods; Nonlinear finite element analysis

строительное дело

расчёт методом конечных элементов

Horizon         
  • mi}}.
  • Geometrical basis for calculating the distance to the horizon, tangent-secant theorem
  • A ship moving away, beyond the horizon
  • Geometrical distance to the horizon, Pythagorean theorem
  • Maximum zenith angle for elevated observer in homogeneous spherical atmosphere
  • A view across a 20-km-wide bay in the coast of Spain. Note the curvature of the Earth hiding the base of the buildings on the far shore.
  • Geometrical horizon distance
  • Three types of horizon
  • Typical desert horizon
  • Two points on the horizon are at the intersections of the lines extending the segments representing the edges of the building in the foreground. The horizon line coincides here with the line at the top of the doors and windows.
APPARENT LINE THAT SEPARATES EARTH FROM SKY
The horizon; Horizon distance; Offing; Offings; Horizen; Curvature of the horizon; Distance to the horizon; Horizon dip; Horizon zenith angle; Distance to horizon

[hə'raɪzn]

общая лексика

"Горизонт" (еженедельная научно-популярная телепрограмма; передаётся Би-би-си-2 [BBC 2] с 1964)

horizon         
  • mi}}.
  • Geometrical basis for calculating the distance to the horizon, tangent-secant theorem
  • A ship moving away, beyond the horizon
  • Geometrical distance to the horizon, Pythagorean theorem
  • Maximum zenith angle for elevated observer in homogeneous spherical atmosphere
  • A view across a 20-km-wide bay in the coast of Spain. Note the curvature of the Earth hiding the base of the buildings on the far shore.
  • Geometrical horizon distance
  • Three types of horizon
  • Typical desert horizon
  • Two points on the horizon are at the intersections of the lines extending the segments representing the edges of the building in the foreground. The horizon line coincides here with the line at the top of the doors and windows.
APPARENT LINE THAT SEPARATES EARTH FROM SKY
The horizon; Horizon distance; Offing; Offings; Horizen; Curvature of the horizon; Distance to the horizon; Horizon dip; Horizon zenith angle; Distance to horizon
horizon distance         
  • mi}}.
  • Geometrical basis for calculating the distance to the horizon, tangent-secant theorem
  • A ship moving away, beyond the horizon
  • Geometrical distance to the horizon, Pythagorean theorem
  • Maximum zenith angle for elevated observer in homogeneous spherical atmosphere
  • A view across a 20-km-wide bay in the coast of Spain. Note the curvature of the Earth hiding the base of the buildings on the far shore.
  • Geometrical horizon distance
  • Three types of horizon
  • Typical desert horizon
  • Two points on the horizon are at the intersections of the lines extending the segments representing the edges of the building in the foreground. The horizon line coincides here with the line at the top of the doors and windows.
APPARENT LINE THAT SEPARATES EARTH FROM SKY
The horizon; Horizon distance; Offing; Offings; Horizen; Curvature of the horizon; Distance to the horizon; Horizon dip; Horizon zenith angle; Distance to horizon

общая лексика

дальность видимого горизонта

horizon         
  • mi}}.
  • Geometrical basis for calculating the distance to the horizon, tangent-secant theorem
  • A ship moving away, beyond the horizon
  • Geometrical distance to the horizon, Pythagorean theorem
  • Maximum zenith angle for elevated observer in homogeneous spherical atmosphere
  • A view across a 20-km-wide bay in the coast of Spain. Note the curvature of the Earth hiding the base of the buildings on the far shore.
  • Geometrical horizon distance
  • Three types of horizon
  • Typical desert horizon
  • Two points on the horizon are at the intersections of the lines extending the segments representing the edges of the building in the foreground. The horizon line coincides here with the line at the top of the doors and windows.
APPARENT LINE THAT SEPARATES EARTH FROM SKY
The horizon; Horizon distance; Offing; Offings; Horizen; Curvature of the horizon; Distance to the horizon; Horizon dip; Horizon zenith angle; Distance to horizon

Википедия

Model predictive control

Model predictive control (MPC) is an advanced method of process control that is used to control a process while satisfying a set of constraints. It has been in use in the process industries in chemical plants and oil refineries since the 1980s. In recent years it has also been used in power system balancing models and in power electronics. Model predictive controllers rely on dynamic models of the process, most often linear empirical models obtained by system identification. The main advantage of MPC is the fact that it allows the current timeslot to be optimized, while keeping future timeslots in account. This is achieved by optimizing a finite time-horizon, but only implementing the current timeslot and then optimizing again, repeatedly, thus differing from a linear–quadratic regulator (LQR). Also MPC has the ability to anticipate future events and can take control actions accordingly. PID controllers do not have this predictive ability. MPC is nearly universally implemented as a digital control, although there is research into achieving faster response times with specially designed analog circuitry.

Generalized predictive control (GPC) and dynamic matrix control (DMC) are classical examples of MPC.

Как переводится finite-horizon model на Русский язык