dynamic positioning - definitie. Wat is dynamic positioning
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Wat (wie) is dynamic positioning - definitie

AUTOMATIC SHIP STATION- AND HEADING-HOLDING SYSTEMS
Dynamic postioning; Dynamic Positioning; Dynamic Positioning Systems; Dynamically positioned; Dynamically Positioned Vessel; Dynamically positioned vessel; Dynamic Positioning System; Dynamic positioning system

Aerospool WT9 Dynamic         
  • Aerospool WT9 Dynamic with fixed landing gear
  • Aerospool WT9 Dynamic with retractable gear
  • Aerospool WT9 Dynamic in flight
LIGHT SPORT AIRCRAFT BY AEROSPOOL IN SLOVAKIA
Aerospool WT 9 Dynamic; Aerospool WT-9 Dynamic; Aerospool Dynamic
The Aerospool WT9 Dynamic is a Slovak ultralight and light-sport aircraft, designed and produced by Aerospool of Prievidza. The aircraft is supplied as a complete ready-to-fly-aircraft.
Underwater acoustic positioning system         
SYSTEM FOR THE TRACKING AND NAVIGATION OF UNDERWATER VEHICLES OR DIVERS BY USING ACOUSTIC DISTANCE AND/OR DIRECTION MEASUREMENTS, AND SUBSEQUENT POSITION TRIANGULATION
Acoustic position reference system; Underwater Acoustic Positioning System; Acoustic positioning system
An underwater acoustic positioning systemUniversity of Rhode Island: Discovery of Sound in the SeaUnderwater Acoustic Positioning Systems, P.H.
global positioning system         
  • 2-D Cartesian true-range multilateration (trilateration) scenario
  • Emblem of the [[50th Space Wing]]
  • GPS constellation system animation
  • 50px
  • '''black'''}}), that need not necessarily be mutually tangent
  • AFSPC Vice Commander Lt. Gen. DT Thompson presents Dr. Gladys West with an award as she is inducted into the Air Force Space and Missile Pioneers Hall of Fame.
  • W}}).
  • GPS receivers come in a variety of formats, from devices integrated into cars, phones, and watches, to dedicated devices such as these.
  • Ground monitor station used from 1984 to 2007, on display at the [[Air Force Space and Missile Museum]]
  • antenna]] is mounted on the roof of a hut containing a scientific experiment needing precise timing.
  • Unlaunched GPS block II-A satellite on display at the [[San Diego Air & Space Museum]]
  • Three satellites (labeled as "stations" A, B, C) have known locations. The true times it takes for a radio signal to travel from each satellite to the receiver are unknown, but the true time differences are known. Then, each time difference locates the receiver on a branch of a hyperbola focused on the satellites. The receiver is then located at one of the two intersections.
  • The first portable GPS unit, a Leica WM 101, displayed at the [[Irish National Science Museum]] at [[Maynooth]]
  • A typical GPS receiver with integrated antenna
  • Attaching a GPS guidance kit to a [[dumb bomb]], March 2003
  • [[M982 Excalibur]] GPS-guided [[artillery shell]]
UNITED STATES SATELLITE NAVIGATION SYSTEM
Global positioning system; NAVSTAR; Navstar; Gps; GPS; Global positioning systems; Global positional satellite; Global positioning satellite; Global position satellite; Global positioning; Global positioning satellite system; Global positioning satellites; Navigation Signal Timing and Ranging Global Positioning System; NAVSTAR GPS; Gps coordiantes; Global Positioning Satellite; Global positional satellites; GPS time; Gps map; GPST; GPS system; Global Positioning Systems; GPS monitoring; Precise Positioning Service; Standard Positioning Service; Global Positionning System; Global position system; History of GPS; OD-GPS; US GPS; Navstar GPS; Applications of GPS; Navstar Global Positioning System; Project 621B; Defense Navigation Satellite Development Program; MObile System for Accurate ICBM Control; Military applications of GPS
A global positioning system is a system that uses signals from satellites to find out the position of an object. The abbreviation GPS
is also used.
N-COUNT

Wikipedia

Dynamic positioning

Dynamic positioning (DP) is a computer-controlled system to automatically maintain a vessel's position and heading by using its own propellers and thrusters. Position reference sensors, combined with wind sensors, motion sensors and gyrocompasses, provide information to the computer pertaining to the vessel's position and the magnitude and direction of environmental forces affecting its position. Examples of vessel types that employ DP include ships and semi-submersible mobile offshore drilling units (MODU), oceanographic research vessels, cable layer ships and cruise ships.

The computer program contains a mathematical model of the vessel that includes information pertaining to the wind and current drag of the vessel and the location of the thrusters. This knowledge, combined with the sensor information, allows the computer to calculate the required steering angle and thruster output for each thruster. This allows operations at sea where mooring or anchoring is not feasible due to deep water, congestion on the sea bottom (pipelines, templates) or other problems.

Dynamic positioning may either be absolute in that the position is locked to a fixed point over the bottom, or relative to a moving object like another ship or an underwater vehicle. One may also position the ship at a favorable angle towards wind, waves and current, called weathervaning.

Dynamic positioning is used by much of the offshore oil industry, for example in the North Sea, Persian Gulf, Gulf of Mexico, West Africa, and off the coast of Brazil. There are currently more than 1800 DP ships.

Voorbeelden uit tekstcorpus voor dynamic positioning
1. "The dynamic positioning system can position the ship within a metre, and maintain this precise location regardless of the weather and wind," says Abbes Djari, Port Captain of the Niwa, the largest of E–marine‘s three cableships.
2. The semisubmersible platform is designed with a dual derrick, dynamic positioning, a 6 000 tons variable deck load capacity and a water depth capability up to 3 000 meters.
3. CHIKYU –– the Japanese word for "Earth" –– is also equipped with a dynamic positioning system that can keep the ship fixed in an area with a 30–yard diameter, avoiding a drift that would bend the drill as it drives into the seabed.